KR20160135840A - Cytotoxicity-inducing therapeutic agent - Google Patents
Cytotoxicity-inducing therapeutic agent Download PDFInfo
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- KR20160135840A KR20160135840A KR1020167031317A KR20167031317A KR20160135840A KR 20160135840 A KR20160135840 A KR 20160135840A KR 1020167031317 A KR1020167031317 A KR 1020167031317A KR 20167031317 A KR20167031317 A KR 20167031317A KR 20160135840 A KR20160135840 A KR 20160135840A
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Abstract
글리피칸 3 결합 활성을 갖는 항체 가변 영역을 포함하는 도메인, 및 T 세포 수용체 복합체 결합 활성을 갖는 항체 가변 영역을 포함하는 도메인을 포함하는, 우수한 세포상해 활성과 높은 안전성이 유지된, 새로운 다중특이성 항원 결합 분자를 발견했다. 본 발명의 분자는 글리피칸 3을 발현하는 세포나 조직에 대해서 강한 세포상해성을 나타내기 때문에, 다양한 암을 치료 또는 예방하기 위한 새로운 의약 조성물을 제조하는 것이 가능해진다.A novel multispecific antigen that retains excellent cytotoxic activity and high safety, including a domain comprising an antibody variable region having glypicane 3 binding activity and a domain comprising an antibody variable region having T cell receptor complex binding activity We found a binding molecule. Since the molecule of the present invention shows strong cytotoxicity against cells or tissues expressing glypicane 3, it becomes possible to produce a new medicinal composition for treating or preventing various cancers.
Description
본 발명은 다중특이성 항원 결합 분자 및 그의 이용 등에 관한 것이다.The present invention relates to a multispecific antigen binding molecule and its use and the like.
항체는 혈장 중에서의 안정성이 높고, 부작용이 적기 때문에 의약품으로서 주목받고 있다(비특허문헌 1 및 비특허문헌 2). 항체는, 항원에 결합하는 작용, 아고니스트 작용이나 안타고니스트 작용뿐만 아니라, ADCC(Antibody Dependent Cytotoxicity: 항체 의존성 상해 활성), ADCP(Antibody Dependent Cell Phagocytosis: 항체 의존성 세포 식작용), CDC(보체 의존성 세포상해 활성)와 같은 이펙터 세포에 의한 세포상해 활성(이펙터 기능이라고도 말한다)을 유도하여, 암세포에 대한 항종양 효과를 발휘한다는 것이 알려져 있다(비특허문헌 3). 항체의 Fc 영역이 NK 세포나 매크로파지 등의 이펙터 세포 상에 존재하는 Fc 리셉터에 결합하는 것에 의해, 항체가 결합된 표적의 암세포에 대해서 이들 이펙터 세포가 발휘하는 세포상해가 ADCC이다. 항체의 구조 중에 존재하는 보체 결합 부위에는 보체 복합체가 결합한다. 항체가 결합된 세포의 세포막 상에 당해 복합체 중에 존재하는 보체 성분이 구멍을 형성하는 것에 의해, 물이나 이온의 세포 내로의 유입이 촉진되어 세포가 파괴되는 것에 의한 세포상해가 CDC이다. 지금까지 우수한 항종양 효과를 나타내는 복수의 치료용 항체가, 암치료를 목적으로 하는 의약품으로서 개발되어 있고(비특허문헌 4), 기존의 치료용 항체에는 우수한 작용이 인정되지만, 이러한 항체의 투여에 의해 얻어지는 치료 성적은 아직 만족할 수 있는 것은 아니다.Antibodies are attracting attention as pharmaceuticals because of their high stability in plasma and low side effects (Non-Patent
항체가 ADCC, ADCP, CDC를 발현하기 위해서는, 항체의 Fc 영역과, NK 세포나 매크로파지 등의 이펙터 세포에 존재하는 항체 리셉터(FcγR) 및 각종 보체 성분이 결합하는 것이 필수이다. 인간에서는, FcγR의 단백질 패밀리로서, FcγRIa, FcγRIIa, FcγRIIb, FcγRIIIa, FcγRIIIb의 아이소폼이 보고되어 있고, 각각의 알로타입도 보고되어 있다(비특허문헌 5). 이들 아이소폼 중, FcγRIa, FcγRIIa, FcγRIIIa는 세포 내 도메인에 ITAM(Immunoreceptor Tyrosine-based Activation Motif)이라고 불리는 도메인을 가져, 활성화 시그널을 전달한다. 한편, FcγRIIb만이 세포 내 도메인에 ITIM(Immunoreceptor Tyrosine-based Inhibitory Motif)이라고 불리는 도메인을 가져, 억제 시그널을 전달한다. 어느 FcγR도, 면역 복합체 등에 의해 크로스링크됨으로써, 시그널을 전달한다는 것이 알려져 있다(비특허문헌 6). 실제로, 항체가 암세포에 이펙터 기능을 발휘할 때에는, 암세포막 상에 복수개 결합되어 있는 항체의 Fc 영역에서 이펙터 세포막 상의 FcγR이 클러스터가 되어, 이펙터 세포로 활성화 시그널이 전달된다. 그 결과, 살세포 효과가 발휘되지만, 이때 FcγR의 크로스링크는 암세포 근방에 존재하는 이펙터 세포에 한정되기 때문에, 면역의 활성화는 암세포 국소에서만 일어난다는 것이 나타나 있다.(비특허문헌 7)In order for the antibody to express ADCC, ADCP, and CDC, it is essential that the Fc region of the antibody binds to the antibody receptor (Fc [gamma] R) and various complement components present in the effector cells such as NK cells or macrophages. In humans, isoforms of FcγRIa, FcγRIIa, FcγRIIb, FcγRIIIa, and FcγRIIIb have been reported as protein families of FcγRs, and respective allotypes have also been reported (Non-Patent Document 5). Among these isoforms, Fc [gamma] RIa, Fc [gamma] RIIa, and Fc [gamma] RIIIa have an intracellular domain with a domain called ITAM (Immunoreceptor Tyrosine-based Activation Motif) On the other hand, only Fc [gamma] RIIIb has a domain called ITIM (Immunoreceptor Tyrosine-based Inhibitory Motif) in the intracellular domain and delivers a suppression signal. It is known that any Fc [gamma] R is cross-linked by an immune complex or the like, thereby transmitting a signal (Non-Patent Document 6). Actually, when the antibody exhibits an effector function on cancer cells, Fc? R on the effector cell membrane becomes a cluster in the Fc region of the antibody bound on a plurality of cancer cell membranes, and the activation signal is transferred to the effector cell. As a result, the cell effect is exhibited. However, since the cross-link of Fc [gamma] R is confined to effector cells existing in the vicinity of cancer cells, activation of the immunity is observed only in the cancer cell locus (Non-Patent Document 7)
천연형의 면역글로불린은, 가변 영역에서 항원과 결합하고, 정상 영역에서 FcγR, FcRn, FcαR, FcεR과 같은 리셉터나 보체와 결합한다. IgG의 Fc 영역에서 상호 작용하는 결합 분자 중 하나인 FcRn은, 항체의 중쇄 각각에 1분자씩 결합하기 때문에, IgG형의 항체 1분자에 대해서 2분자의 FcRn이 결합한다는 것이 보고되어 있다. 그러나, FcRn 등과는 달리, FcγR은 항체의 힌지 영역 및 CH2 도메인에서 상호 작용하고, IgG형의 항체 1분자에 대해서 1분자만 결합한다(비특허문헌 8). 또한, 통상의 천연형의 IgG형의 항체는, 그 가변 영역(Fab)에 의해 1개 에피토프를 인식하여 결합하기 때문에, 1개의 항원밖에 결합할 수 없다. 한편, 암이나 염증에 있어서는 다종류의 단백질이 관여한다는 것이 알려져 있고, 단백질끼리가 크로스토크(crosstalk)되어 있는 경우가 있다. 예를 들어 면역 질환에서는, 몇 가지의 염증성 사이토카인(TNF, IL1이나 IL6)이 관여하고 있다는 것이 알려져 있다(비특허문헌 9). 또한 암에 있어서 약제 내성을 획득하는 메커니즘의 하나로서, 다른 리셉터가 활성화된다는 것이 알려져 있다(비특허문헌 10). 이와 같은 경우, 1개의 에피토프를 인식하는 통상의 항체에서는, 복수의 단백질을 저해할 수 없다.The native immunoglobulin binds to the antigen in the variable region and binds to receptors or complement such as Fc [gamma] R, FcRn, Fc [alpha] R, Fc [epsilon] R in the normal region. It has been reported that FcRn, which is one of the binding molecules that interact in the Fc region of IgG, binds two molecules of FcRn to one molecule of an IgG type antibody because each molecule binds to each heavy chain of the antibody. However, unlike FcRn and the like, Fc [gamma] R interacts in the hinge region and the CH2 domain of the antibody and binds only one molecule to one molecule of the IgG type (Non-Patent Document 8). In addition, a typical natural IgG type antibody can recognize only one antigen because it recognizes and binds one epitope by its variable region (Fab). On the other hand, it is known that many kinds of proteins are involved in cancer and inflammation, and there are cases where proteins are crosstalked. For example, in immunological diseases, it is known that several inflammatory cytokines (TNF, IL1 or IL6) are involved (Non-Patent Document 9). It is also known that another receptor is activated as one mechanism for acquiring drug resistance in cancer (Non-Patent Document 10). In such a case, a common antibody recognizing one epitope can not inhibit a plurality of proteins.
복수의 타겟을 저해하는 분자로서, 1분자로 2종류 이상의 항원과 결합하는 항체(Bispecific 항체, 이중특이성 항체)가 연구되고 있다. 천연형의 IgG형의 항체를 개량하는 것에 의해, 상이한 2개의 항원(제1의 항원과 제2의 항원)에 대한 결합 활성을 부여하는 것이 가능하다(비특허문헌 11). 그 때문에, 2종류 이상의 항원을 1개의 분자로 중화하는 작용뿐만 아니라, 세포상해 활성을 가지는 세포와 암세포를 크로스링크함으로써 항종양 활성을 높이는 작용이 있다. 지금까지 Bispecific 항체의 분자형으로서, 항체의 N 말단이나 C 말단에 항원 결합 부위를 부가한 분자(DVD-Ig나 scFv-IgG)나 항체의 2개의 Fab 영역이 상이한 서열을 갖는 분자(공통 L쇄 Bispecific 항체 및 하이브리드 하이브리도마), 하나의 Fab 영역이 2개의 항원을 인식하는 분자(Two-in-one IgG), CH3 영역의 루프 부위를 새로운 항원 결합 부위로 한 분자(Fcab)가 보고되어 있다(비특허문헌 12 및 비특허문헌 13). 어느 Bispecific 항체도 Fc 영역에서 FcγR과 상호 작용하기 때문에, 항체의 이펙터 기능은 보존되어 있다. 따라서, Bispecific 항체가 인식하는 어느 항원에 대해서도, FcγR과 동시에 결합하고, 항원을 발현하고 있는 세포에 대해서 ADCC 활성을 나타낸다.As molecules that inhibit multiple targets, antibodies (bispecific antibodies, bispecific antibodies) that bind to two or more kinds of antigens in one molecule have been studied. It is possible to impart binding activity to two different antigens (the first antigen and the second antigen) by improving the antibody of the natural type IgG type (Non-Patent Document 11). Therefore, it not only acts to neutralize two or more kinds of antigens with one molecule but also acts to cross-link cells having cytotoxic activity with cancer cells to enhance antitumor activity. Up to now, as a molecular type of bispecific antibody, a molecule (DVD-Ig or scFv-IgG) in which an antigen-binding site has been added to the N-terminus or C-terminus of an antibody or a molecule having two sequences of two Fab regions Bispecific antibody and hybrid hybridoma), a molecule in which one Fab region recognizes two antigens (Two-in-one IgG), and a molecule in which the loop region of the CH3 region is a new antigen binding site (Fcab) (Non-patent
Bispecific 항체가 인식하는 항원이 모두 암에 특이적으로 발현하고 있는 항원이면, 어느 항원에 결합해도 암세포에 대해서 세포상해 활성을 나타내기 때문에, 하나의 항원을 인식하는 통상의 항체 의약품보다도 효율적인 항종양 효과를 기대할 수 있다. 그러나, Bispecific 항체가 인식하는 항원 중 어느 하나의 항원이라도 정상 조직에 발현하고 있는 경우나 면역 세포에 발현하는 세포인 경우, FcγR과의 크로스링크에 의해 정상 조직의 상해나 사이토카인의 방출이 일어난다(비특허문헌 14). 그 결과, 강한 부작용을 유도해 버린다.If an antigen recognized by a bispecific antibody is an antigen specifically expressed in cancer, even if it binds to any antigen, it exhibits a cytotoxic activity against cancer cells. Therefore, it is more effective than a conventional antibody drug recognizing one antigen Can be expected. However, when any one of the antigens recognized by the bispecific antibody is expressed in the normal tissues or in the cells expressing in the immune cells, normal tissue injury or cytokine release occurs by cross linking with Fc [gamma] R Non-Patent Document 14). As a result, strong side effects are induced.
Bispecific 항체의 하나로서, T 세포를 이펙터 세포로서 동원하는 세포상해를 그 항종양 효과의 메커니즘으로 하는 항체인 T 세포 리다이렉팅 항체(T cell-redirecting 항체)가 1980년대부터 알려져 있다(비특허문헌 15, 16, 17). NK 세포나 매크로파지를 이펙터 세포로서 동원하는 ADCC를 그 항종양 효과의 메커니즘으로 하는 항체와는 달리, T 세포 리다이렉팅 항체는, T 세포 상의 T 세포 리셉터(TCR) 복합체의 구성 서브유닛 중 어느 하나에 대한 항체, 특히 CD3 epsilon쇄에 결합하는 항체와, 표적인 암세포 상의 항원에 결합하는 항체를 포함하는 bi-specific 항체이다. T 세포 리다이렉팅 항체가 CD3 epsilon쇄와 암항원에 동시에 결합하는 것에 의해, T 세포가 암세포에 접근한다. 그 결과, T 세포가 가지는 세포상해 작용에 의해 암세포에 대한 항종양 효과가 발휘된다고 생각되고 있다.As one of the bispecific antibodies, a T cell redirecting antibody (T cell-redirecting antibody), which is an antibody that causes cytotoxic effects that mobilize T cells as effector cells, has been known since the 1980s (Non-Patent
T 세포 리다이렉팅 항체의 하나로서 알려져 있는 Catumaxomab은, 2개의 Fab로 각각 암항원(EpCAM)과 T 세포에 발현하고 있는 CD3 ε쇄에 결합한다. Catumaxomab은 암항원과 CD3 ε이 동시에 결합하는 것에 의해, T 세포에 의한 세포상해 활성을 유도하고, 암항원과 FcγR이 동시에 결합하는 것에 의해 NK 세포나 매크로파지 등의 항원 제시 세포에 의한 세포상해 활성을 유도한다. 2개의 세포상해 활성을 이용하는 것에 의해 Catumaxomab은 복강내 투여에 의해 악성 복수증에서 높은 치료 효과가 나타나고 있어, 유럽에서 승인되어 있다(비특허문헌 18). 또 Catumaxomab 투여에 의해 암세포에 대해서 반응하는 항체가 출현한 예가 보고되어, 획득 면역이 유도된다는 것이 밝혀졌다(비특허문헌 19). 이 결과로부터 T 세포에 의한 세포상해 활성과 함께, FcγR을 개재한 NK 세포나 매크로파지 등의 세포에 의한 작용의 양자를 가지는 항체(특히 trifunctional 항체라고 부른다)는 강한 항종양 효과와 획득 면역 유도를 기대할 수 있기 때문에 주목받고 있다.Catumaxomab, known as one of the T cell redirecting antibodies, binds to the CD3 ε chain, which is expressed on cancer antigens (EpCAM) and T cells, respectively, by two Fabs. Catumaxomab induces cytotoxic activity of T cells by the simultaneous binding of cancer antigen and CD3 epsilon, and cytotoxic activity of antigen presenting cells such as NK cells and macrophages by the simultaneous binding of cancer antigen and FcγR . By using two cytotoxic activities, Catumaxomab has been shown to have a high therapeutic effect in malignant ascites due to intraperitoneal administration and has been approved in Europe (Non-Patent Document 18). In addition, an example of the appearance of an antibody that reacts with cancer cells by administration of catumaxomab has been reported, and it has been found that acquisition immunization is induced (Non-Patent Document 19). From these results, it is expected that an antibody (particularly called a trifunctional antibody) having both cytotoxic activity by T cells and action by cells such as NK cells or macrophages through FcγR would have a strong antitumor effect and induce acquired immunity It is attracting attention because it can.
그러나, trifunctional 항체는 암항원이 존재하지 않는 경우라도, CD3 ε과 FcγR이 동시에 결합하기 때문에, 암세포가 존재하지 않는 환경에서도 CD3 ε을 발현하고 있는 T 세포와 FcγR을 발현하고 있는 세포가 크로스링크되어, 각종 사이토카인이 대량으로 산생된다. 이와 같은 암항원 비의존적인 각종 사이토카인의 산생 유도에 의해, trifunctional 항체의 투여는 현재, 복강내에 한정되어 있고(비특허문헌 20), 중독(重篤)한 사이토카인 폭풍양(樣)의 부작용에 의해 전신 투여는 극히 곤란하다. 실제, 비소세포 폐암 환자에 대한 catumaxomab의 전신 투여에 의한 제1상 임상 시험에 있어서는, 5μg/body라는 극히 낮은 용량이 최대 허용 투여량이고, 그 이상의 용량의 투여에 의해 다양한 중독한 부작용이 일어난다는 것이 보고되어 있다(비특허문헌 21).However, even in the absence of cancer antigen, the trifunctional antibody binds CD3? And Fc? R at the same time, so that T cells expressing CD3? And cells expressing Fc? R are crosslinked even in an environment in which cancer cells do not exist , And various cytokines are produced in large quantities. Due to the induction of various cytokines such as cancer antigens, the administration of the trifunctional antibody is currently limited to the peritoneal cavity (Non-Patent Document 20), and the adverse effect of severe cytokine storm affects Systemic administration is extremely difficult. In fact, in
이와 같이, 종래 기술의 Bispecific 항체에서는, 첫 번째의 항원인 암항원(EpCAM)과 두 번째의 항원인 CD3 ε 양쪽의 항원이 FcγR과 동시에 결합될 수 있기 때문에, FcγR과 두 번째의 항원인 CD3 ε의 동시 결합에 의한 이와 같은 부작용을 회피하는 것은 분자 구조적으로 불가능하다.Thus, in the bispecific antibody of the prior art, since the antigen of both the first antigenic cancer antigen (EpCAM) and the second antigen CD3? Can be bound simultaneously with the Fc? R, the Fc? R and the second antigen CD3? It is impossible to structure such a side effect by the simultaneous bonding.
한편, BiTE(bispecific T-cell engager)는 catumaxomab과는 달리 Fcγ 수용체에 대한 결합 부위를 가지지 않기 때문에, 암항원 비의존적으로 T 세포와 NK 세포나 매크로파지 등에 발현하는 수용체가 가교되는 경우는 없다. 그 때문에, catumaxomab이 투여된 경우에 관찰된 암항원 비의존적인 사이토카인의 유도는 일어나지 않는다는 것이 나타나 있다. 그러나, BiTE는 Fc 영역을 빠트린 저분자량형의 개변 항체 분자이기 때문에, 치료용 항체로서 통상 이용되는 IgG형의 항체와 비교하여, 환자에게 투여된 BiTE의 혈중 반감기는 현저히 짧다는 문제점이 존재한다. 실제, 생체에 투여된 BiTE의 혈중 반감기는 수시간 정도인 것이 나타나 있고(비특허문헌 22, 23), blinatumomab의 임상 시험에 있어서는 미니 펌프를 이용한 지속 정맥내 투여에 의해 blinatumomab의 투여가 행해지고 있다. 이러한 투여는 환자에게 현저히 편리성이 나쁜 투여법일 뿐만 아니라, 기기의 고장 등에 의한 의료 사고의 위험성도 잠재하여, 바람직한 치료법이라고는 말할 수 없다.BiTE (bispecific T-cell engager), unlike catumaxomab, does not have a binding site for the Fcγ receptor. Therefore, the receptor that expresses T cells and NK cells or macrophages is not cross-linked in a cancer antigen-independent manner. Therefore, it has been shown that the induction of the cancer antigen-independent cytokine observed when catumaxomab is administered does not occur. However, since BiTE is a low-molecular-weight-type modified antibody molecule deficient in the Fc region, there is a problem that the blood half-life of BiTE administered to a patient is significantly shorter than that of an IgG-type antibody commonly used as a therapeutic antibody. In fact, the biodegradation time of BiTE administered in vivo is about several hours (
근년, FcγR에 대한 결합 활성을 저감시킨 Fc 영역을 이용함으로써, BiTE가 가지는 강한 항종양 활성과, 암항원 비의존적으로 사이토카인 폭풍 등을 유도하지 않는다는 안전성상의 우수한 성질이 유지되고, 또한 긴 혈중 반감기를 가지는 새로운 폴리펩타이드 회합체가 제공되고 있다(특허문헌 1).In recent years, by using the Fc region in which the binding activity to Fc [gamma] R is reduced, excellent safety properties such as strong antitumor activity of BiTE and induction of cytokine storm dependence on cancer antigen are maintained, (Patent Document 1).
한편, 종래 기술의 이중특이성 항체를 발현시키는 경우, 2종류의 H쇄와 2종류의 L쇄를 발현시키기 위해, 그 조합으로서는 10종류의 조합이 생각된다. 그 중 목적하는 결합특이성을 갖는 조합은 1종류이다. 그 때문에, 목적하는 이중특이성 항체를 취득하기 위해서는, 10종류의 항체로부터 1종류의 목적하는 항체를 정제할 필요가 있어, 극히 효율이 나쁘고, 또한 곤란하다.On the other hand, in the case of expressing the bispecific antibodies of the prior art, ten types of combinations are conceivable for expressing two kinds of H chains and two kinds of L chains. Among them, one type has a combination with a desired binding specificity. Therefore, in order to obtain a desired bispecific antibody, it is necessary to purify one kind of desired antibody from 10 kinds of antibodies, which is extremely inefficient and difficult.
이 문제를 해결하는 방법으로서, IgG의 H쇄의 CH3 영역에 아미노산 치환을 실시하는 것에 의해, 이종(異種)의 H쇄의 조합, 예를 들면, 항원 A에 대한 H쇄와 항원 B에 대한 H쇄를 우선적으로 분비시키는 방법이 보고되어 있다(특허문헌 2, 3, 4, 5, 6, 7 및 비특허문헌 24, 25). 이들에는, "knob; 돌기"와 "hole; 공극"이라는 물리적인 장애를 이용한 방법이나, 전하적인 반발을 이용한 방법이 보고되어 있다.As a method for solving this problem, by performing amino acid substitution in the CH3 region of the H chain of IgG, a combination of different H chains, for example, a combination of H chains for antigen A and H (
더 효율적으로 목적 분자를 얻기 위해서, 아미노산 서열이 동일함에도 불구하고, 2개의 상이한 항원에 결합하는 것이 가능한 L쇄를 이용하는 방법이 보고되어 있다(특허문헌 8, 9). 그러나, 공통 L쇄를 이용하는 것에 의해, 항원에 대한 affinity가 크게 저하될 가능성이 있어, 항원에 대한 affinity가 유지된 공통 L쇄를 발견하는 것은 곤란하다.In order to obtain a target molecule more efficiently, there has been reported a method using an L chain capable of binding to two different antigens although the amino acid sequence is the same (
본 발명은 상기의 정황에 비추어 이루어진 것으로, T 세포를 표적 암세포에 근접시켜 T 세포에 의한 글리피칸 3 발현 세포를 포함하는 표적 암조직에 대한 세포상해 활성을 통하여 암을 치료하는 것이 가능하고, 또한 산생 효율이 높은 분자형인 다중특이성 항원 결합 분자, 당해 항원 결합 분자의 제조 방법, 및 당해 항원 결합 분자를 유효 성분으로서 포함하는 의약 조성물을 제공하는 것을 목적으로 한다.The present invention has been made in view of the above circumstances, and it is possible to treat cancer through a cytotoxic activity against a target cancer tissue including a glycopycan-3 expressing cell by a T cell close to a T cell, A method for producing the antigen-binding molecule, and a pharmaceutical composition comprising the antigen-binding molecule as an active ingredient.
본 발명자들은, 글리피칸 3에 결합하는 항체 가변 영역을 포함하는 도메인과, T 세포 수용체 복합체에 결합하는 항체 가변 영역을 포함하는 도메인에, 양 항원에 대한 친화성을 향상시키는 것이 가능한 공통 L쇄를 발견하여, 이것에 의해 산생 효율이 높은 분자형으로 하면서, 더욱이, BiTE 등의 T 세포 리다이렉팅 항체가 가지는 강한 항종양 활성과, 암항원 비의존적으로 사이토카인 폭풍 등을 유도하지 않는다는 안전성상의 우수한 성질이 유지되고, 또한 긴 혈중 반감기를 가지는 새로운 다중특이성 항원 결합 분자를 발견했다. 또, 공통 L쇄를 갖는 다중특이성 항원 결합 분자가 글리피칸 3 발현 암세포를 표적으로 해서 세포상해를 초래한다는 것을 발견했다. 본 발명자들은, 이러한 발견에 기초하여, 본 발명에 따른 다중특이성 항원 결합 분자가 글리피칸 3 발현 암세포를 포함하는 암조직을 상해한다는 것을 밝혔다.The present inventors have found that a common L chain capable of improving the affinity for both antigens is added to a domain including an antibody variable region binding to
즉, 본 발명은 이하를 제공하는 것이다.That is, the present invention provides the following.
〔1〕 하기의 도메인; [1] the following domains;
(1) 글리피칸 3 결합 활성을 갖는 항체 가변 영역을 포함하는 도메인,(1) a domain comprising an antibody variable
(2) T 세포 수용체 복합체 결합 활성을 갖는 항체 가변 영역을 포함하는 도메인, 및(2) a domain comprising an antibody variable region having T cell receptor complex binding activity, and
(3) Fcγ 수용체에 대한 결합 활성이 저하되어 있는 Fc 영역을 포함하는 도메인(3) a domain containing an Fc region in which the binding activity to the Fc? Receptor is decreased
을 포함하고, (1)의 가변 영역과 (2)의 가변 영역에 포함되는 L쇄 가변 영역이 공통의 아미노산 서열인 다중특이성 항원 결합 분자로서, 세포상해 활성이, 글리피칸 3 결합 도메인이 서열번호 47 및 48로 이루어지고, T 세포 수용체 복합체 결합 도메인이 서열번호 49 및 50으로 이루어지는 이중특이성 항체(GPC3_ERY22_rCE115)와 비교하여, 동등하거나 또는 그 이상인, 다중특이성 항원 결합 분자., Wherein the variable region of (1) and the variable region of the variable region of (2) have a common amino acid sequence, wherein the cytotoxic activity is the cytotoxic activity, and the
〔2〕 세포상해 활성이 T 세포 의존적 세포상해 활성인, 〔1〕에 기재된 다중특이성 항원 결합 분자.[2] The multispecific antigen binding molecule according to [1], wherein the cytotoxic activity is a T cell dependent cytotoxic activity.
〔3〕 T 세포 수용체 복합체 결합 활성이 T 세포 수용체에 대한 결합 활성인, 〔1〕 또는 〔2〕에 기재된 다중특이성 항원 결합 분자.[3] The multispecific antigen binding molecule according to [1] or [2], wherein the T cell receptor complex binding activity is a binding activity to a T cell receptor.
〔4〕 T 세포 수용체 복합체 결합 활성이 CD3 ε쇄에 대한 결합 활성인, 〔1〕 내지 〔3〕 중 어느 하나에 기재된 다중특이성 항원 결합 분자.[4] The multispecific antigen binding molecule according to any one of [1] to [3], wherein the T cell receptor complex binding activity is binding activity to the CD3? Chain.
〔5〕 〔1〕의 (1)에 기재된 항체 가변 영역이, 하기 (a1)∼(a5)로부터 선택되는 어느 하나의 H쇄 CDR1, CDR2 및 CDR3의 조합을 포함하는 항체 가변 영역, 또는 이것과 기능적으로 동등한 항체 가변 영역인, 〔1〕 내지 〔4〕 중 어느 하나에 기재된 다중특이성 항원 결합 분자.[5] The method according to [1], wherein the antibody variable region described in (1) in (1) is an antibody variable region comprising any combination of H chain CDR1, CDR2 and CDR3 selected from (a1) to A multispecific antigen-binding molecule according to any one of [1] to [4], wherein the antibody is a functionally equivalent antibody variable region.
(a1) CDR1, CDR2 및 CDR3이, 서열번호: 40에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다(a1) CDR1, CDR2 and CDR3 are identical to the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 40
(a2) CDR1, CDR2 및 CDR3이, 서열번호: 197에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다(a2) CDR1, CDR2 and CDR3 are identical to the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 197
(a3) CDR1, CDR2 및 CDR3이, 서열번호: 206에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다(a3) CDR1, CDR2 and CDR3 are identical to the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 206
(a4) CDR1, CDR2 및 CDR3이, 서열번호: 211에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다(a4) CDR1, CDR2 and CDR3 are identical to the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 211
(a5) CDR1, CDR2 및 CDR3이, 서열번호: 215에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다(a5) CDR1, CDR2 and CDR3 are identical to the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 215
〔6〕 〔1〕의 (2)에 기재된 항체 가변 영역이, 하기 (b1)∼(b15)로부터 선택되는 어느 하나의 H쇄 CDR1, CDR2 및 CDR3의 아미노산 서열의 조합을 포함하는 항체 가변 영역, 또는 이것과 기능적으로 동등한 항체 가변 영역인, 〔1〕 내지 〔4〕 중 어느 하나에 기재된 다중특이성 항원 결합 분자.[6] The antibody of [1], wherein the antibody variable region of (2) comprises an antibody variable region comprising a combination of amino acid sequences of any one of H chain CDR1, CDR2 and CDR3 selected from (b1) to (b15) Or an antibody variable region functionally equivalent thereto. The multispecific antigen binding molecule according to any one of [1] to [4]
(b1) CDR1, CDR2 및 CDR3이, 서열번호: 52에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다(b1) CDR1, CDR2 and CDR3 are identical to the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 52
(b2) CDR1, CDR2 및 CDR3이, 서열번호: 103에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다(b2) CDR1, CDR2 and CDR3 are identical to the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 103
(b3) CDR1, CDR2 및 CDR3이, 서열번호: 122에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다(b3) CDR1, CDR2 and CDR3 are identical to the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 122
(b4) CDR1, CDR2 및 CDR3이, 서열번호: 128에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다(b4) CDR1, CDR2 and CDR3 are identical to the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 128
(b5) CDR1, CDR2 및 CDR3이, 서열번호: 129에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다(b5) CDR1, CDR2 and CDR3 are identical to the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 129
(b6) CDR1, CDR2 및 CDR3이, 서열번호: 132에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다(b6) CDR1, CDR2 and CDR3 are identical to the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 132
(b7) CDR1, CDR2 및 CDR3이, 서열번호: 142에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다(b7) CDR1, CDR2 and CDR3 are identical to the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 142
(b8) CDR1, CDR2 및 CDR3이, 서열번호: 144에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다(b8) CDR1, CDR2 and CDR3 are identical to the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 144
(b9) CDR1, CDR2 및 CDR3이, 서열번호: 164에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다(b9) CDR1, CDR2 and CDR3 are identical to the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 164
(b10) CDR1, CDR2 및 CDR3이, 서열번호: 168에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다(b10) CDR1, CDR2 and CDR3 are identical to the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 168
(b11) CDR1, CDR2 및 CDR3이, 서열번호: 421에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다(b11) CDR1, CDR2 and CDR3 are identical to the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 421
(b12) CDR1, CDR2 및 CDR3이, 서열번호: 424에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다(b12) CDR1, CDR2 and CDR3 are identical to the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 424
(b13) CDR1, CDR2 및 CDR3이, 서열번호: 426에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다(b13) CDR1, CDR2 and CDR3 are identical to the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 426
(b14) CDR1, CDR2 및 CDR3이, 서열번호: 429에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다(b14) CDR1, CDR2 and CDR3 are identical to the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 429
(b15) CDR1, CDR2 및 CDR3이, 서열번호: 430에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다(b15) CDR1, CDR2 and CDR3 are identical to the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 430
〔7〕 〔1〕의 (1) 및 (2)에 기재된 항체 가변 영역이, 하기 (c1)∼(c19)로부터 선택되는 어느 하나의 H쇄 CDR1, CDR2 및 CDR3의 조합을 포함하는 항체 가변 영역, 또는 이것과 기능적으로 동등한 항체 가변 영역인, 〔1〕 내지 〔4〕 중 어느 하나에 기재된 다중특이성 항원 결합 분자.[7] The antibody-expressing antibody according to [1], wherein the antibody-variable region described in (1) and (2) comprises a combination of any one of H chain CDR1, CDR2 and CDR3 selected from (c1) , Or an antibody variable region functionally equivalent thereto. The multispecific antigen binding molecule according to any one of [1] to [4]
(c1) 〔1〕의 (1)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 40에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하고, 〔1〕의 (2)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 52에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다,(c1) CDR1, CDR2 and CDR3 contained in the antibody variable region of (1) in [1] are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 40, CDR2 and CDR3 contained in the antibody variable region described in SEQ ID NO: 2 are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions included in SEQ ID NO: 52,
(c2) 〔1〕의 (1)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 40에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하고, 〔1〕의 (2)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 421에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다,(c2) CDR1, CDR2 and CDR3 contained in the antibody variable region of (1) of [1] are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 40, 2, the CDR1, CDR2 and CDR3 contained in the antibody variable region are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions included in SEQ ID NO: 421,
(c3) 〔1〕의 (1)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 40에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하고, 〔1〕의 (2)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 426에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다,(c3) CDR1, CDR2 and CDR3 contained in the antibody variable region of (1) of [1] are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 40, 2, the CDR1, CDR2 and CDR3 contained in the antibody variable region are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 426,
(c4) 〔1〕의 (1)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 40에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하고, 〔1〕의 (2)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 429에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다,(c4) the CDR1, CDR2 and CDR3 contained in the antibody variable region of (1) of [1] are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 40, CDR2 and CDR3 contained in the antibody variable region described in SEQ ID NO: 2 are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions included in SEQ ID NO: 429,
(c5) 〔1〕의 (1)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 40에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하고, 〔1〕의 (2)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 430에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다,(c5) CDR1, CDR2 and CDR3 contained in the antibody variable region of (1) of [1] are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 40, 2, the CDR1, CDR2 and CDR3 contained in the antibody variable region are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions included in SEQ ID NO: 430,
(c6) 〔1〕의 (1)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 197에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하고, 〔1〕의 (2)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 128에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다,(c6) CDR1, CDR2 and CDR3 contained in the antibody variable region of (1) of [1] are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 197, CDR2 and CDR3 contained in the antibody variable region described in SEQ ID NO: 2 are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions included in SEQ ID NO: 128,
(c7) 〔1〕의 (1)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 206에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하고, 〔1〕의 (2)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 142에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다,(c7) The CDR1, CDR2 and CDR3 contained in the antibody variable region of (1) of [1] are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 206, CDR2 and CDR3 contained in the antibody variable region described in SEQ ID NO: 2 are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions included in SEQ ID NO: 142,
(c8) 〔1〕의 (1)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 206에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하고, 〔1〕의 (2)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 144에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다,(c8) CDR1, CDR2 and CDR3 contained in the antibody variable region of (1) of [1] are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 206, CDR2 and CDR3 contained in the antibody variable region described in SEQ ID NO: 2 are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions included in SEQ ID NO: 144,
(c9) 〔1〕의 (1)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 206에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하고, 〔1〕의 (2)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 164에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다,(c9) CDR1, CDR2 and CDR3 contained in the antibody variable region of (1) of [1] are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 206, CDR2 and CDR3 contained in the antibody variable region described in SEQ ID NO: 2 are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions included in SEQ ID NO: 164,
(c10) 〔1〕의 (1)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 206에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하고, 〔1〕의 (2)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 168에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다,(c10) CDR1, CDR2 and CDR3 contained in the antibody variable region of (1) of [1] are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 206, 2, the CDR1, CDR2 and CDR3 contained in the antibody variable region are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 168,
(c11) 〔1〕의 (1)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 211에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하고, 〔1〕의 (2)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 142에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다,(c11) CDR1, CDR2 and CDR3 contained in the antibody variable region of (1) of [1] are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 211, CDR2 and CDR3 contained in the antibody variable region described in SEQ ID NO: 2 are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions included in SEQ ID NO: 142,
(c12) 〔1〕의 (1)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 211에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하고, 〔1〕의 (2)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 144에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다,(c12) the CDR1, CDR2 and CDR3 contained in the antibody variable region of (1) of [1] are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 211, CDR2 and CDR3 contained in the antibody variable region described in SEQ ID NO: 2 are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions included in SEQ ID NO: 144,
(c13) 〔1〕의 (1)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 211에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하고, 〔1〕의 (2)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 164에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다,(c13) CDR1, CDR2 and CDR3 contained in the antibody variable region of (1) in [1] are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 211, CDR2 and CDR3 contained in the antibody variable region described in SEQ ID NO: 2 are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions included in SEQ ID NO: 164,
(c14) 〔1〕의 (1)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 211에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하고, 〔1〕의 (2)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 168에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다,(c14) the CDR1, CDR2 and CDR3 contained in the antibody variable region of (1) of [1] are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 211, 2, the CDR1, CDR2 and CDR3 contained in the antibody variable region are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 168,
(c15) 〔1〕의 (1)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 215에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하고, 〔1〕의 (2)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 103에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다,(c15) CDR1, CDR2 and CDR3 contained in the antibody variable region of (1) of [1] are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 215, CDR2 and CDR3 contained in the antibody variable region described in SEQ ID NO: 2 are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions included in SEQ ID NO: 103,
(c16) 〔1〕의 (1)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 215에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하고, 〔1〕의 (2)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 122에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다,(c16) CDR1, CDR2 and CDR3 contained in the antibody variable region of (1) of [1] are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 215, CDR2 and CDR3 contained in the antibody variable region described in SEQ ID NO: 2 are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions included in SEQ ID NO: 122,
(c17) 〔1〕의 (1)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 215에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하고, 〔1〕의 (2)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 129에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다,(c17) the CDR1, CDR2 and CDR3 contained in the antibody variable region of (1) of [1] are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 215, 2, the CDR1, CDR2 and CDR3 contained in the antibody variable region are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions included in SEQ ID NO: 129,
(c18) 〔1〕의 (1)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 215에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하고, 〔1〕의 (2)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 132에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다,(c18) CDR1, CDR2 and CDR3 contained in the antibody variable region of (1) of [1] are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 215, 2, the CDR1, CDR2 and CDR3 contained in the antibody variable region are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions included in SEQ ID NO: 132,
(c19) 〔1〕의 (1)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 215에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하고, 〔1〕의 (2)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 424에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다(c19) CDR1, CDR2 and CDR3 contained in the antibody variable region of (1) of [1] are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 215, 2, the CDR1, CDR2, and CDR3 contained in the antibody variable region are the same as the amino acid sequences of the CDR1, CDR2, and CDR3 regions included in SEQ ID NO: 424
〔8〕 CDR1, CDR2 및 CDR3이, Kabat 넘버링에 기초하는 CDR1, CDR2 및 CDR3 영역인, 〔5〕 내지 〔7〕 중 어느 하나에 기재된 다중특이성 항원 결합 분자.[8] The multispecific antigen binding molecule according to any one of [5] to [7], wherein CDR1, CDR2 and CDR3 are CDR1, CDR2 and CDR3 regions based on Kabat numbering.
〔9〕 〔1〕의 (1)에 기재된 항체 가변 영역이, 하기 (a1)∼(a5)로부터 선택되는 어느 하나의 H쇄 가변 영역을 포함하는 항체 가변 영역, 또는 이것과 기능적으로 동등한 항체 가변 영역인, 〔1〕 내지 〔4〕 중 어느 하나에 기재된 다중특이성 항원 결합 분자.[9] The method according to [1], wherein the antibody variable region of [1] is selected from the group consisting of an antibody variable region comprising any one of the H chain variable regions selected from (a1) to (a5) Antigen binding molecule according to any one of [1] to [4].
(a1) H쇄 가변 영역이, 서열번호: 40에 기재된 아미노산 서열이다(a1) the H chain variable region is the amino acid sequence set forth in SEQ ID NO: 40
(a2) H쇄 가변 영역이, 서열번호: 197에 기재된 아미노산 서열이다(a2) the H chain variable region is the amino acid sequence set forth in SEQ ID NO: 197
(a3) H쇄 가변 영역이, 서열번호: 206에 기재된 아미노산 서열이다(a3) the H chain variable region is the amino acid sequence set forth in SEQ ID NO: 206
(a4) H쇄 가변 영역이, 서열번호: 211에 기재된 아미노산 서열이다(a4) the H chain variable region is the amino acid sequence set forth in SEQ ID NO: 211
(a5) H쇄 가변 영역이, 서열번호: 215에 기재된 아미노산 서열이다(a5) the H chain variable region is the amino acid sequence set forth in SEQ ID NO: 215
〔10〕 〔1〕의 (2)에 기재된 항체 가변 영역이, 하기 (b1)∼(b15)로부터 선택되는 어느 하나의 H쇄 가변 영역을 포함하는 항체 가변 영역, 또는 이것과 기능적으로 동등한 항체 가변 영역인, 〔1〕 내지 〔4〕 중 어느 하나에 기재된 다중특이성 항원 결합 분자.[10] The method according to [1], wherein the antibody variable region described in (2) of [1] is an antibody variable region comprising any one of the H chain variable regions selected from (b1) to (b15) Antigen binding molecule according to any one of [1] to [4].
(b1) H쇄 가변 영역이, 서열번호: 52에 기재된 아미노산 서열이다(b1) the H chain variable region is the amino acid sequence set forth in SEQ ID NO: 52
(b2) H쇄 가변 영역이, 서열번호: 103에 기재된 아미노산 서열이다(b2) the H chain variable region is the amino acid sequence set forth in SEQ ID NO: 103
(b3) H쇄 가변 영역이, 서열번호: 122에 기재된 아미노산 서열이다(b3) the H chain variable region is the amino acid sequence set forth in SEQ ID NO: 122
(b4) H쇄 가변 영역이, 서열번호: 128에 기재된 아미노산 서열이다(b4) the H chain variable region is the amino acid sequence set forth in SEQ ID NO: 128
(b5) H쇄 가변 영역이, 서열번호: 129에 기재된 아미노산 서열이다(b5) the H chain variable region is the amino acid sequence set forth in SEQ ID NO: 129
(b6) H쇄 가변 영역이, 서열번호: 132에 기재된 아미노산 서열이다(b6) the H chain variable region is the amino acid sequence set forth in SEQ ID NO: 132
(b7) H쇄 가변 영역이, 서열번호: 142에 기재된 아미노산 서열이다(b7) the H chain variable region is the amino acid sequence set forth in SEQ ID NO: 142
(b8) H쇄 가변 영역이, 서열번호: 144에 기재된 아미노산 서열이다(b8) the H chain variable region is the amino acid sequence set forth in SEQ ID NO: 144
(b9) H쇄 가변 영역이, 서열번호: 164에 기재된 아미노산 서열이다(b9) the H chain variable region is the amino acid sequence set forth in SEQ ID NO: 164
(b10) H쇄 가변 영역이, 서열번호: 168에 기재된 아미노산 서열이다(b10) the H chain variable region is the amino acid sequence set forth in SEQ ID NO: 168
(b11) H쇄 가변 영역이, 서열번호: 421에 기재된 아미노산 서열이다(b11) the H chain variable region is the amino acid sequence set forth in SEQ ID NO: 421
(b12) H쇄 가변 영역이, 서열번호: 424에 기재된 아미노산 서열이다(b12) the H chain variable region is the amino acid sequence set forth in SEQ ID NO: 424
(b13) H쇄 가변 영역이, 서열번호: 426에 기재된 아미노산 서열이다(b13) the H chain variable region is the amino acid sequence set forth in SEQ ID NO: 426
(b14) H쇄 가변 영역이, 서열번호: 429에 기재된 아미노산 서열이다(b14) the H chain variable region is the amino acid sequence set forth in SEQ ID NO: 429
(b15) H쇄 가변 영역이, 서열번호: 430에 기재된 아미노산 서열이다(b15) the H chain variable region is the amino acid sequence set forth in SEQ ID NO: 430
〔11〕 〔1〕의 (1) 및 (2)에 기재된 항체 가변 영역이, 하기 (c1)∼(c19)로부터 선택되는 어느 하나의 H쇄 가변 영역의 조합을 포함하는 항체 가변 영역, 또는 이것과 기능적으로 동등한 항체 가변 영역인, 〔1〕 내지 〔4〕 중 어느 하나에 기재된 다중특이성 항원 결합 분자.[11] The method according to any one of [1] to [1], wherein the antibody variable region described in (1) and (2) is an antibody variable region comprising a combination of any one of H chain variable regions selected from (c1) Binding antigen according to any one of [1] to [4], wherein the functional domain is an antibody variable region functionally equivalent to the antigen-binding domain.
(c1) 〔1〕의 (1)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 40에 기재된 아미노산 서열이고, 〔1〕의 (2)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 52에 기재된 아미노산 서열이다,(c1) the H chain variable region contained in the antibody variable region described in (1) of [1] is the amino acid sequence of SEQ ID NO: 40 and the H chain variable region contained in the antibody variable region described in (1) Wherein the chain variable region is the amino acid sequence set forth in SEQ ID NO: 52,
(c2) 〔1〕의 (1)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 40에 기재된 아미노산 서열이고, 〔1〕의 (2)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 421에 기재된 아미노산 서열이다,(c2) the H chain variable region included in the antibody variable region of (1) of [1] is the amino acid sequence of SEQ ID NO: 40, and the H The chain variable region is the amino acid sequence set forth in SEQ ID NO: 421,
(c3) 〔1〕의 (1)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 40에 기재된 아미노산 서열이고, 〔1〕의 (2)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 426에 기재된 아미노산 서열이다,(c3) the H chain variable region contained in the antibody variable region described in (1) of [1] is the amino acid sequence set forth in SEQ ID NO: 40 and the H chain variable region included in the antibody variable region described in (1) The chain variable region is the amino acid sequence set forth in SEQ ID NO: 426,
(c4) 〔1〕의 (1)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 40에 기재된 아미노산 서열이고, 〔1〕의 (2)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 429에 기재된 아미노산 서열이다,(c4) The antibody according to (1), wherein the H chain variable region contained in the antibody variable region described in (1) is the amino acid sequence of SEQ ID NO: 40, The chain variable region is the amino acid sequence set forth in SEQ ID NO: 429,
(c5) 〔1〕의 (1)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 40에 기재된 아미노산 서열이고, 〔1〕의 (2)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 430에 기재된 아미노산 서열이다,(c5) The antibody according to (1), wherein the H chain variable region contained in the antibody variable region of (1) is the amino acid sequence of SEQ ID NO: 40, Wherein the chain variable region is the amino acid sequence set forth in SEQ ID NO: 430,
(c6) 〔1〕의 (1)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 197에 기재된 아미노산 서열이고, 〔1〕의 (2)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 128에 기재된 아미노산 서열이다,(c6) The antibody according to (1), wherein the H chain variable region contained in the antibody variable region described in (1) is the amino acid sequence represented by SEQ ID NO: 197, The chain variable region is the amino acid sequence set forth in SEQ ID NO: 128,
(c7) 〔1〕의 (1)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 206에 기재된 아미노산 서열이고, 〔1〕의 (2)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 142에 기재된 아미노산 서열이다,(c7) The antibody according to (1), wherein the H chain variable region contained in the antibody variable region according to (1) is the amino acid sequence according to SEQ ID NO: 206, The chain variable region is the amino acid sequence set forth in SEQ ID NO: 142,
(c8) 〔1〕의 (1)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 206에 기재된 아미노산 서열이고, 〔1〕의 (2)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 144에 기재된 아미노산 서열이다,(c8) The antibody fragment according to (1), wherein the H chain variable region contained in the antibody variable region according to (1) is the amino acid sequence according to SEQ ID NO: 206, The chain variable region is the amino acid sequence set forth in SEQ ID NO: 144,
(c9) 〔1〕의 (1)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 206에 기재된 아미노산 서열이고, 〔1〕의 (2)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 164에 기재된 아미노산 서열이다,(c9) The antibody according to (1), wherein the H chain variable region contained in the antibody variable region according to (1) is the amino acid sequence according to SEQ ID NO: 206, The chain variable region is the amino acid sequence set forth in SEQ ID NO: 164,
(c10) 〔1〕의 (1)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 206에 기재된 아미노산 서열이고, 〔1〕의 (2)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 168에 기재된 아미노산 서열이다,(c10) the H chain variable region contained in the antibody variable region of (1) of [1] is the amino acid sequence of SEQ ID NO: 206, and the H The chain variable region is the amino acid sequence set forth in SEQ ID NO: 168,
(c11) 〔1〕의 (1)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 211에 기재된 아미노산 서열이고, 〔1〕의 (2)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 142에 기재된 아미노산 서열이다,(c11) The antibody fragment according to (1), wherein the H chain variable region contained in the antibody variable region described in (1) is the amino acid sequence represented by SEQ ID NO: 211, The chain variable region is the amino acid sequence set forth in SEQ ID NO: 142,
(c12) 〔1〕의 (1)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 211에 기재된 아미노산 서열이고, 〔1〕의 (2)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 144에 기재된 아미노산 서열이다,(c12) The antibody according to (1), wherein the H chain variable region contained in the antibody variable region of (1) is the amino acid sequence of SEQ ID NO: 211, The chain variable region is the amino acid sequence set forth in SEQ ID NO: 144,
(c13) 〔1〕의 (1)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 211에 기재된 아미노산 서열이고, 〔1〕의 (2)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 164에 기재된 아미노산 서열이다,(c13) the H chain variable region contained in the antibody variable region of (1) of [1] is the amino acid sequence of SEQ ID NO: 211, The chain variable region is the amino acid sequence set forth in SEQ ID NO: 164,
(c14) 〔1〕의 (1)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 211에 기재된 아미노산 서열이고, 〔1〕의 (2)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 168에 기재된 아미노산 서열이다,(c14) The antibody or antibody fragment according to (1), wherein the H chain variable region contained in the antibody variable region according to (1) is the amino acid sequence according to SEQ ID NO: 211, The chain variable region is the amino acid sequence set forth in SEQ ID NO: 168,
(c15) 〔1〕의 (1)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 215에 기재된 아미노산 서열이고, 〔1〕의 (2)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 103에 기재된 아미노산 서열이다,(c15) The antibody according to (1), wherein the H chain variable region contained in the antibody variable region of (1) is the amino acid sequence of SEQ ID NO: 215, The chain variable region is the amino acid sequence set forth in SEQ ID NO: 103,
(c16) 〔1〕의 (1)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 215에 기재된 아미노산 서열이고, 〔1〕의 (2)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 122에 기재된 아미노산 서열이다,(c16) The antibody according to (1), wherein the H chain variable region contained in the antibody variable region of (1) is the amino acid sequence of SEQ ID NO: 215, The chain variable region is the amino acid sequence set forth in SEQ ID NO: 122,
(c17) 〔1〕의 (1)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 215에 기재된 아미노산 서열이고, 〔1〕의 (2)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 129에 기재된 아미노산 서열이다,(c17) The antibody-producing method according to (1), wherein the H chain variable region contained in the antibody variable region according to (1) is the amino acid sequence according to SEQ ID NO: 215, The chain variable region is the amino acid sequence set forth in SEQ ID NO: 129,
(c18) 〔1〕의 (1)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 215에 기재된 아미노산 서열이고, 〔1〕의 (2)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 132에 기재된 아미노산 서열이다,(c18) the H chain variable region contained in the antibody variable region of (1) of [1] is the amino acid sequence of SEQ ID NO: 215, and the H The chain variable region is the amino acid sequence set forth in SEQ ID NO: 132,
(c19) 〔1〕의 (1)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 215에 기재된 아미노산 서열이고, 〔1〕의 (2)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 424에 기재된 아미노산 서열이다(c19) The antibody fragment according to (1), wherein the H chain variable region contained in the antibody variable region according to (1) is the amino acid sequence according to SEQ ID NO: 215, Chain variable region is the amino acid sequence set forth in SEQ ID NO: 424
〔12〕 〔1〕에 기재된 공통 L쇄가, 하기 (d1)∼(d11)로부터 선택되는 어느 하나의 CDR1, CDR2 및 CDR3의 조합을 포함하는 공통 L쇄, 또는 이것과 기능적으로 동등한 공통 L쇄인, 〔1〕 내지 〔11〕 중 어느 하나에 기재된 다중특이성 항원 결합 분자.[12] The method according to any one of [1] to [1], wherein the common L chain comprises a common L chain comprising a combination of any one of CDR1, CDR2 and CDR3 selected from the following (d1) to (d11), or a common L chain functionally equivalent thereto , The multispecific antigen binding molecule according to any one of [1] to [11].
(d1) CDR1, CDR2 및 CDR3이, 서열번호: 53에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다(d1) CDR1, CDR2 and CDR3 are identical to the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 53
(d2) CDR1, CDR2 및 CDR3이, 서열번호: 223에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다(d2) CDR1, CDR2 and CDR3 are identical to the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 223
(d3) CDR1, CDR2 및 CDR3이, 서열번호: 299에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다(d3) CDR1, CDR2 and CDR3 are identical to the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 299
(d4) CDR1, CDR2 및 CDR3이, 서열번호: 301에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다(d4) CDR1, CDR2 and CDR3 are identical to the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 301
(d5) CDR1, CDR2 및 CDR3이, 서열번호: 302에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다(d5) CDR1, CDR2 and CDR3 are identical to the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 302
(d6) CDR1, CDR2 및 CDR3이, 서열번호: 304에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다(d6) CDR1, CDR2 and CDR3 are identical to the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 304
(d7) CDR1, CDR2 및 CDR3이, 서열번호: 306에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다(d7) CDR1, CDR2 and CDR3 are identical to the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 306
(d8) CDR1, CDR2 및 CDR3이, 서열번호: 307에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다(d8) CDR1, CDR2 and CDR3 are identical to the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 307
(d9) CDR1, CDR2 및 CDR3이, 서열번호: 309에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다(d9) CDR1, CDR2 and CDR3 are identical to the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 309
(d10) CDR1, CDR2 및 CDR3이, 서열번호: 310에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다(d10) CDR1, CDR2 and CDR3 are identical to the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 310
(d11) CDR1, CDR2 및 CDR3이, 서열번호: 319에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다(d11) CDR1, CDR2 and CDR3 are identical to the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 319
〔13〕 〔1〕에 기재된 L쇄 가변 영역이, 하기 (d1)∼(d11)로부터 선택되는 어느 하나의 L쇄 아미노산 서열의 가변 영역인, 〔1〕 내지 〔11〕 중 어느 하나에 기재된 다중특이성 항원 결합 분자.[13] The method according to any one of [1] to [11], wherein the L chain variable region according to [1] is a variable region of any one of the L chain amino acid sequences selected from the following (d1) to Specific antigen binding molecule.
(d1) 서열번호: 53에 기재된 아미노산 서열로 이루어지는 L쇄(d1) an L chain comprising the amino acid sequence of SEQ ID NO: 53
(d2) 서열번호: 223에 기재된 아미노산 서열로 이루어지는 L쇄(d2) an L chain comprising the amino acid sequence of SEQ ID NO: 223
(d3) 서열번호: 299에 기재된 아미노산 서열로 이루어지는 L쇄(d3) an L chain comprising the amino acid sequence of SEQ ID NO: 299
(d4) 서열번호: 301에 기재된 아미노산 서열로 이루어지는 L쇄(d4) an L chain comprising the amino acid sequence of SEQ ID NO: 301
(d5) 서열번호: 302에 기재된 아미노산 서열로 이루어지는 L쇄(d5) an L chain comprising the amino acid sequence of SEQ ID NO: 302
(d6) 서열번호: 304에 기재된 아미노산 서열로 이루어지는 L쇄(d6) an L chain comprising the amino acid sequence of SEQ ID NO: 304
(d7) 서열번호: 306에 기재된 아미노산 서열로 이루어지는 L쇄(d7) an L chain comprising the amino acid sequence of SEQ ID NO: 306
(d8) 서열번호: 307에 기재된 아미노산 서열로 이루어지는 L쇄(d8) an L chain comprising the amino acid sequence of SEQ ID NO: 307
(d9) 서열번호: 309에 기재된 아미노산 서열로 이루어지는 L쇄(d9) an L chain comprising the amino acid sequence of SEQ ID NO: 309
(d10) 서열번호: 310에 기재된 아미노산 서열로 이루어지는 L쇄(d10) an L chain comprising the amino acid sequence of SEQ ID NO: 310
(d11) 서열번호: 319에 기재된 아미노산 서열로 이루어지는 L쇄(d11) an L chain comprising the amino acid sequence of SEQ ID NO: 319
〔14〕 〔1〕의 (1) 및 (2)에 기재된 항체 가변 영역, 및, 공통 L쇄 가변 영역이, 하기 (e1)∼(e25)로부터 선택되는 어느 하나의 H쇄 CDR1, CDR2 및 CDR3, 및, L쇄 CDR1, CDR2 및 CDR3의 조합을 포함하는 항체 가변 영역, 또는 이것과 기능적으로 동등한 항체 가변 영역인, 〔1〕 내지 〔4〕 중 어느 하나에 기재된 다중특이성 항원 결합 분자.[14] The antibody according to any one of [1] to [6], wherein the antibody variable region and the common L chain variable region according to [1] , And an antibody variable region comprising a combination of the L chain CDR1, CDR2 and CDR3, or an antibody variable region functionally equivalent thereto. The multispecific antigen binding molecule according to any one of [1] to [4]
(e1) 〔1〕의 (1)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 197에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하고, 〔1〕의 (2)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 128에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하며, 공통 L쇄의 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 53에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다,(e1) CDR1, CDR2 and CDR3 contained in the antibody variable region described in (1) of [1] are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 197, CDR2, and CDR3 contained in the antibody variable region described in SEQ ID NO: 2 are the same as the amino acid sequences of the CDR1, CDR2, and CDR3 regions included in SEQ ID NO: 128, and CDR1, CDR2 And CDR3 are identical to the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 53,
(e2) 〔1〕의 (1)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 197에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하고, 〔1〕의 (2)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 128에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하며, 공통 L쇄의 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 299에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다,(e2) CDR1, CDR2 and CDR3 contained in the antibody variable region of (1) of [1] are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 197, CDR2, and CDR3 contained in the antibody variable region described in SEQ ID NO: 2 are the same as the amino acid sequences of the CDR1, CDR2, and CDR3 regions included in SEQ ID NO: 128, and CDR1, CDR2 And CDR3 are identical to the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 299,
(e3) 〔1〕의 (1)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 197에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하고, 〔1〕의 (2)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 128에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하며, 공통 L쇄의 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 310에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다,(e3) CDR1, CDR2 and CDR3 contained in the antibody variable region of (1) in [1] are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 197, CDR2, and CDR3 contained in the antibody variable region described in SEQ ID NO: 2 are the same as the amino acid sequences of the CDR1, CDR2, and CDR3 regions included in SEQ ID NO: 128, and CDR1, CDR2 And CDR3 are identical to the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 310,
(e4) 〔1〕의 (1)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 197에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하고, 〔1〕의 (2)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 128에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하며, 공통 L쇄의 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 319에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다,(e4) the CDR1, CDR2 and CDR3 contained in the antibody variable region of (1) of [1] are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 197, CDR2, and CDR3 contained in the antibody variable region described in SEQ ID NO: 2 are the same as the amino acid sequences of the CDR1, CDR2, and CDR3 regions included in SEQ ID NO: 128, and CDR1, CDR2 And CDR3 are identical to the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 319,
(e5) 〔1〕의 (1)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 206에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하고, 〔1〕의 (2)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 142에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하며, 공통 L쇄의 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 223에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다,(e5) CDR1, CDR2 and CDR3 contained in the antibody variable region of (1) in [1] are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 206, CDR2, and CDR3 contained in the antibody variable region described in SEQ ID NO: 2 are the same as the amino acid sequences of the CDR1, CDR2, and CDR3 regions included in SEQ ID NO: 142, and CDR1, CDR2 And CDR3 are identical to the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 223,
(e6) 〔1〕의 (1)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 206에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하고, 〔1〕의 (2)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 144에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하며, 공통 L쇄의 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 223에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다,(e6) CDR1, CDR2 and CDR3 contained in the antibody variable region of (1) in [1] are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 206, CDR2, and CDR3 contained in the antibody variable region described in SEQ ID NO: 2 are the same as the amino acid sequences of the CDR1, CDR2, and CDR3 regions included in SEQ ID NO: 144, and CDR1, CDR2 And CDR3 are identical to the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 223,
(e7) 〔1〕의 (1)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 206에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하고, 〔1〕의 (2)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 164에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하며, 공통 L쇄의 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 223에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다,(e7) CDR1, CDR2 and CDR3 contained in the antibody variable region of (1) of [1] are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 206, CDR2, and CDR3 contained in the antibody variable region described in SEQ ID NO: 2 are the same as the amino acid sequences of the CDR1, CDR2, and CDR3 regions included in SEQ ID NO: 164, and CDR1, CDR2 And CDR3 are identical to the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 223,
(e8) 〔1〕의 (1)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 206에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하고, 〔1〕의 (2)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 168에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하며, 공통 L쇄의 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 223에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다,(e8) CDR1, CDR2 and CDR3 contained in the antibody variable region of (1) of [1] are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 206, CDR2 and CDR3 contained in the antibody variable region described in SEQ ID NO: 2 are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions included in SEQ ID NO: 168, and CDR1, CDR2 And CDR3 are identical to the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 223,
(e9) 〔1〕의 (1)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 211에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하고, 〔1〕의 (2)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 142에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하며, 공통 L쇄의 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 223에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다,(e9) CDR1, CDR2 and CDR3 contained in the antibody variable region of (1) in [1] are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 211, CDR2, and CDR3 contained in the antibody variable region described in SEQ ID NO: 2 are the same as the amino acid sequences of the CDR1, CDR2, and CDR3 regions included in SEQ ID NO: 142, and CDR1, CDR2 And CDR3 are identical to the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 223,
(e10) 〔1〕의 (1)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 211에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하고, 〔1〕의 (2)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 142에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하며, 공통 L쇄의 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 299에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다,(e10) CDR1, CDR2 and CDR3 contained in the antibody variable region of (1) of [1] are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 211, CDR2, and CDR3 contained in the antibody variable region described in SEQ ID NO: 2 are the same as the amino acid sequences of the CDR1, CDR2, and CDR3 regions included in SEQ ID NO: 142, and CDR1, CDR2 And CDR3 are identical to the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 299,
(e11) 〔1〕의 (1)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 211에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하고, 〔1〕의 (2)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 144에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하며, 공통 L쇄의 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 223에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다,(e11) CDR1, CDR2 and CDR3 contained in the antibody variable region of (1) of [1] are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 211, CDR2, and CDR3 contained in the antibody variable region described in SEQ ID NO: 2 are the same as the amino acid sequences of the CDR1, CDR2, and CDR3 regions included in SEQ ID NO: 144, and CDR1, CDR2 And CDR3 are identical to the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 223,
(e12) 〔1〕의 (1)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 211에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하고, 〔1〕의 (2)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 164에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하며, 공통 L쇄의 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 223에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다,(e12) CDR1, CDR2 and CDR3 contained in the antibody variable region of (1) in [1] are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 211, CDR2, and CDR3 contained in the antibody variable region described in SEQ ID NO: 2 are the same as the amino acid sequences of the CDR1, CDR2, and CDR3 regions included in SEQ ID NO: 164, and CDR1, CDR2 And CDR3 are identical to the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 223,
(e13) 〔1〕의 (1)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 211에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하고, 〔1〕의 (2)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 168에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하며, 공통 L쇄의 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 223에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다,(e13) CDR1, CDR2 and CDR3 contained in the antibody variable region of (1) in [1] are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 211, CDR2 and CDR3 contained in the antibody variable region described in SEQ ID NO: 2 are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions included in SEQ ID NO: 168, and CDR1, CDR2 And CDR3 are identical to the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 223,
(e14) 〔1〕의 (1)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 215에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하고, 〔1〕의 (2)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 103에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하며, 공통 L쇄의 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 53에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다,(e14) CDR1, CDR2 and CDR3 contained in the antibody variable region of (1) in [1] are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 215, CDR2, and CDR3 contained in the antibody variable region described in SEQ ID NO: 2 are the same as the amino acid sequences of the CDR1, CDR2, and CDR3 regions included in SEQ ID NO: 103, and CDR1, CDR2 And CDR3 are identical to the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 53,
(e15) 〔1〕의 (1)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 215에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하고, 〔1〕의 (2)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 103에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하며, 공통 L쇄의 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 299에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다,(e15) the CDR1, CDR2 and CDR3 contained in the antibody variable region of (1) of [1] are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 215, CDR2, and CDR3 contained in the antibody variable region described in SEQ ID NO: 2 are the same as the amino acid sequences of the CDR1, CDR2, and CDR3 regions included in SEQ ID NO: 103, and CDR1, CDR2 And CDR3 are identical to the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 299,
(e16) 〔1〕의 (1)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 215에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하고, 〔1〕의 (2)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 103에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하며, 공통 L쇄의 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 301에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다,(e16) CDR1, CDR2 and CDR3 contained in the antibody variable region of (1) of [1] are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 215, CDR2, and CDR3 contained in the antibody variable region described in SEQ ID NO: 2 are the same as the amino acid sequences of the CDR1, CDR2, and CDR3 regions included in SEQ ID NO: 103, and CDR1, CDR2 And CDR3 are identical to the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 301,
(e17) 〔1〕의 (1)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 215에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하고, 〔1〕의 (2)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 103에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하며, 공통 L쇄의 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 302에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다,(e17) CDR1, CDR2 and CDR3 contained in the antibody variable region of (1) in [1] are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 215, CDR2, and CDR3 contained in the antibody variable region described in SEQ ID NO: 2 are the same as the amino acid sequences of the CDR1, CDR2, and CDR3 regions included in SEQ ID NO: 103, and CDR1, CDR2 And CDR3 are identical to the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 302,
(e18) 〔1〕의 (1)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 215에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하고, 〔1〕의 (2)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 103에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하며, 공통 L쇄의 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 304에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다,(e18) CDR1, CDR2 and CDR3 contained in the antibody variable region of (1) of [1] are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 215, CDR2, and CDR3 contained in the antibody variable region described in SEQ ID NO: 2 are the same as the amino acid sequences of the CDR1, CDR2, and CDR3 regions included in SEQ ID NO: 103, and CDR1, CDR2 And CDR3 are identical to the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 304,
(e19) 〔1〕의 (1)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 215에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하고, 〔1〕의 (2)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 103에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하며, 공통 L쇄의 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 306에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다,(e19) CDR1, CDR2 and CDR3 contained in the antibody variable region of (1) of [1] are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 215, CDR2, and CDR3 contained in the antibody variable region described in SEQ ID NO: 2 are the same as the amino acid sequences of the CDR1, CDR2, and CDR3 regions included in SEQ ID NO: 103, and CDR1, CDR2 And CDR3 are identical to the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 306,
(e20) 〔1〕의 (1)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 215에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하고, 〔1〕의 (2)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 103에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하며, 공통 L쇄의 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 307에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다,(e20) CDR1, CDR2 and CDR3 contained in the antibody variable region of (1) of [1] are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 215, CDR2, and CDR3 contained in the antibody variable region described in SEQ ID NO: 2 are the same as the amino acid sequences of the CDR1, CDR2, and CDR3 regions included in SEQ ID NO: 103, and CDR1, CDR2 And CDR3 are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 307,
(e21) 〔1〕의 (1)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 215에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하고, 〔1〕의 (2)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 103에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하며, 공통 L쇄의 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 309에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다,(e21) The CDR1, CDR2 and CDR3 contained in the antibody variable region of (1) of [1] are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 215, CDR2, and CDR3 contained in the antibody variable region described in SEQ ID NO: 2 are the same as the amino acid sequences of the CDR1, CDR2, and CDR3 regions included in SEQ ID NO: 103, and CDR1, CDR2 And CDR3 are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 309,
(e22) 〔1〕의 (1)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 215에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하고, 〔1〕의 (2)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 122에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하며, 공통 L쇄의 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 53에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다,(e22) CDR1, CDR2 and CDR3 contained in the antibody variable region of (1) in [1] are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 215, CDR2 and CDR3 contained in the antibody variable region described in SEQ ID NO: 2 are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions included in SEQ ID NO: 122, and CDR1, CDR2 And CDR3 are identical to the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 53,
(e23) 〔1〕의 (1)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 215에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하고, 〔1〕의 (2)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 129에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하며, 공통 L쇄의 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 53에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다,(e23) CDR1, CDR2 and CDR3 contained in the antibody variable region of (1) of [1] are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 215, CDR2, and CDR3 contained in the antibody variable region described in SEQ ID NO: 2 are the same as the amino acid sequences of the CDR1, CDR2, and CDR3 regions included in SEQ ID NO: 129, and CDR1, CDR2 And CDR3 are identical to the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 53,
(e24) 〔1〕의 (1)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 215에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하고, 〔1〕의 (2)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 132에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하며, 공통 L쇄의 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 53에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다,(e24) CDR1, CDR2 and CDR3 contained in the antibody variable region of (1) in [1] are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 215, CDR2 and CDR3 contained in the antibody variable region described in SEQ ID NO: 2 are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions included in SEQ ID NO: 132, and CDR1, CDR2 And CDR3 are identical to the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 53,
(e25) 〔1〕의 (1)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 215에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하고, 〔1〕의 (2)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 424에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하며, 공통 L쇄의 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 53에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다(e25) CDR1, CDR2 and CDR3 contained in the antibody variable region of (1) of [1] are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 215, CDR2, and CDR3 contained in the antibody variable region described in SEQ ID NO: 2 are the same as the amino acid sequences of the CDR1, CDR2, and CDR3 regions included in SEQ ID NO: 424, and CDR1, CDR2 And CDR3 are identical to the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 53
〔15〕 〔1〕의 (1) 및 (2)에 기재된 항체 가변 영역, 및, 공통 L쇄 가변 영역이, 하기 (f1)∼(f26)으로부터 선택되는 어느 하나의 가변 영역의 조합을 포함하는 항체 가변 영역, 또는 이것과 기능적으로 동등한 항체 가변 영역인, 〔1〕 내지 〔4〕 중 어느 하나에 기재된 다중특이성 항원 결합 분자.[15] The antibody fragment according to [1], wherein the antibody variable region described in [1] and the common L chain variable region include a combination of any one variable region selected from the following (f1) to (f26) A multispecific antigen-binding molecule according to any one of [1] to [4], which is an antibody variable region, or an antibody variable region functionally equivalent thereto.
(f1) 〔1〕의 (1)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 197에 기재된 아미노산 서열과 동일하고, 〔1〕의 (2)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 128에 기재된 아미노산 서열과 동일하며, 공통 L쇄의 항체 가변 영역이, 서열번호: 53에 포함되는 가변 영역의 아미노산 서열과 동일하다,(f1) the H chain variable region contained in the antibody variable region described in (1) of [1] is the same as the amino acid sequence shown in SEQ ID NO: 197 and is included in the antibody variable region according to (2) 128 is the same as the amino acid sequence shown in SEQ ID NO: 128 and the common L chain antibody variable region is the same as the amino acid sequence of the variable region contained in SEQ ID NO: 53,
(f2) 〔1〕의 (1)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 197에 기재된 아미노산 서열과 동일하고, 〔1〕의 (2)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 128에 기재된 아미노산 서열과 동일하며, 공통 L쇄의 항체 가변 영역이, 서열번호: 299에 포함되는 가변 영역의 아미노산 서열과 동일하다,(f2) The H chain variable region contained in the antibody variable region of (1) of [1] is the same as the amino acid sequence of SEQ ID NO: 197 and is included in the antibody variable region of (1) 128 is the same as the amino acid sequence shown in SEQ ID NO: 128 and the common L chain antibody variable region is the same as the amino acid sequence of the variable region contained in SEQ ID NO: 299,
(f3) 〔1〕의 (1)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 197에 기재된 아미노산 서열과 동일하고, 〔1〕의 (2)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 128에 기재된 아미노산 서열과 동일하며, 공통 L쇄의 항체 가변 영역이, 서열번호: 310에 포함되는 가변 영역의 아미노산 서열과 동일하다,(f3) the H chain variable region contained in the antibody variable region described in (1) of [1] is the same as the amino acid sequence shown in SEQ ID NO: 197 and is included in the antibody variable region according to (1) The antibody chain variable region of the common L chain is the same as the amino acid sequence of the variable region contained in SEQ ID NO:
(f4) 〔1〕의 (1)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 197에 기재된 아미노산 서열과 동일하고, 〔1〕의 (2)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 128에 기재된 아미노산 서열과 동일하며, 공통 L쇄의 항체 가변 영역이, 서열번호: 319에 포함되는 가변 영역의 아미노산 서열과 동일하다,(f4) the H chain variable region contained in the antibody variable region described in (1) of [1] is the same as the amino acid sequence described in SEQ ID NO: 197 and is included in the antibody variable region according to (2) 128 is the same as the amino acid sequence shown in SEQ ID NO: 128, and the common L chain antibody variable region is the same as the amino acid sequence of the variable region contained in SEQ ID NO: 319,
(f5) 〔1〕의 (1)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 206에 기재된 아미노산 서열과 동일하고, 〔1〕의 (2)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 142에 기재된 아미노산 서열과 동일하며, 공통 L쇄의 항체 가변 영역이, 서열번호: 223에 포함되는 가변 영역의 아미노산 서열과 동일하다,(f5) The antibody according to (1), wherein the H chain variable region contained in the antibody variable region described in (1) is the same as the amino acid sequence shown in SEQ ID NO: 206 and is included in the antibody variable region described in (2) The antibody chain variable region of the common L chain is the same as the amino acid sequence of the variable region contained in SEQ ID NO:
(f6) 〔1〕의 (1)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 206에 기재된 아미노산 서열과 동일하고, 〔1〕의 (2)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 144에 기재된 아미노산 서열과 동일하며, 공통 L쇄의 항체 가변 영역이, 서열번호: 223에 포함되는 가변 영역의 아미노산 서열과 동일하다,(f6) The antibody according to (1), wherein the H chain variable region contained in the antibody variable region described in (1) is the same as the amino acid sequence set forth in SEQ ID NO: 206 and is included in the antibody variable region 144, and the antibody variable region of the common L chain is the same as the amino acid sequence of the variable region contained in SEQ ID NO: 223, and the antibody variable region of the common L chain is the same as the amino acid sequence of the variable region contained in SEQ ID NO:
(f7) 〔1〕의 (1)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 206에 기재된 아미노산 서열과 동일하고, 〔1〕의 (2)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 164에 기재된 아미노산 서열과 동일하며, 공통 L쇄의 항체 가변 영역이, 서열번호: 223에 포함되는 가변 영역의 아미노산 서열과 동일하다,(f7) the H chain variable region contained in the antibody variable region described in (1) of [1] is the same as the amino acid sequence described in SEQ ID NO: 206 and is included in the antibody variable region according to (2) 164, and the antibody variable region of the common L chain is the same as the amino acid sequence of the variable region contained in SEQ ID NO: 223, and the antibody variable region of the common L chain is the same as the amino acid sequence of SEQ ID NO:
(f8) 〔1〕의 (1)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 206에 기재된 아미노산 서열과 동일하고, 〔1〕의 (2)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 168에 기재된 아미노산 서열과 동일하며, 공통 L쇄의 항체 가변 영역이, 서열번호: 223에 포함되는 가변 영역의 아미노산 서열과 동일하다,(f8) The antibody according to [1], wherein the H chain variable region contained in the antibody variable region of (1) is the same as the amino acid sequence of SEQ ID NO: 206 and is included in the antibody variable region of The antibody chain variable region of the common L chain is the same as the amino acid sequence of the variable region contained in SEQ ID NO:
(f9) 〔1〕의 (1)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 211에 기재된 아미노산 서열과 동일하고, 〔1〕의 (2)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 142에 기재된 아미노산 서열과 동일하며, 공통 L쇄의 항체 가변 영역이, 서열번호: 223에 포함되는 가변 영역의 아미노산 서열과 동일하다,(f9) The antibody according to (1), wherein the H chain variable region contained in the antibody variable region described in (1) is the same as the amino acid sequence described in SEQ ID NO: 211 and is included in the antibody variable region described in (2) The antibody chain variable region of the common L chain is the same as the amino acid sequence of the variable region contained in SEQ ID NO:
(f10) 〔1〕의 (1)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 211에 기재된 아미노산 서열과 동일하고, 〔1〕의 (2)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 142에 기재된 아미노산 서열과 동일하며, 공통 L쇄의 항체 가변 영역이, 서열번호: 299에 포함되는 가변 영역의 아미노산 서열과 동일하다,(f10) The H chain variable region contained in the antibody variable region described in (1) of [1] is the same as the amino acid sequence described in SEQ ID NO: 211 and is included in the antibody variable region described in (2) 142 is the same as the amino acid sequence shown in SEQ ID NO: 142 and the common L chain antibody variable region is the same as the amino acid sequence of the variable region contained in SEQ ID NO: 299,
(f11) 〔1〕의 (1)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 211에 기재된 아미노산 서열과 동일하고, 〔1〕의 (2)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 144에 기재된 아미노산 서열과 동일하며, 공통 L쇄의 항체 가변 영역이, 서열번호: 223에 포함되는 가변 영역의 아미노산 서열과 동일하다,(f11) The H chain variable region contained in the antibody variable region described in (1) of [1] is the same as the amino acid sequence described in SEQ ID NO: 211 and is included in the antibody variable region described in (2) 144, and the antibody variable region of the common L chain is the same as the amino acid sequence of the variable region contained in SEQ ID NO: 223, and the antibody variable region of the common L chain is the same as the amino acid sequence of the variable region contained in SEQ ID NO:
(f12) 〔1〕의 (1)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 211에 기재된 아미노산 서열과 동일하고, 〔1〕의 (2)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 164에 기재된 아미노산 서열과 동일하며, 공통 L쇄의 항체 가변 영역이, 서열번호: 223에 포함되는 가변 영역의 아미노산 서열과 동일하다,(f12) The antibody according to (1), wherein the H chain variable region contained in the antibody variable region described in (1) is the same as the amino acid sequence shown in SEQ ID NO: 211 and is included in the antibody variable region described in (2) 164, and the antibody variable region of the common L chain is the same as the amino acid sequence of the variable region contained in SEQ ID NO: 223, and the antibody variable region of the common L chain is the same as the amino acid sequence of SEQ ID NO:
(f13) 〔1〕의 (1)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 211에 기재된 아미노산 서열과 동일하고, 〔1〕의 (2)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 168에 기재된 아미노산 서열과 동일하며, 공통 L쇄의 항체 가변 영역이, 서열번호: 223에 포함되는 가변 영역의 아미노산 서열과 동일하다,(f13) The H chain variable region included in the antibody variable region described in (1) of [1] is the same as the amino acid sequence described in SEQ ID NO: 211 and is included in the antibody variable region described in (2) The antibody chain variable region of the common L chain is the same as the amino acid sequence of the variable region contained in SEQ ID NO:
(f14) 〔1〕의 (1)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 215에 기재된 아미노산 서열과 동일하고, 〔1〕의 (2)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 103에 기재된 아미노산 서열과 동일하며, 공통 L쇄의 항체 가변 영역이, 서열번호: 53에 포함되는 가변 영역의 아미노산 서열과 동일하다,(f14) the H chain variable region contained in the antibody variable region of (1) of [1] is the same as the amino acid sequence of SEQ ID NO: 215 and is included in the antibody variable region of (1) 103 is the same as the amino acid sequence shown in SEQ ID NO: 103, and the common L chain antibody variable region is the same as the amino acid sequence of the variable region included in SEQ ID NO: 53,
(f15) 〔1〕의 (1)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 215에 기재된 아미노산 서열과 동일하고, 〔1〕의 (2)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 103에 기재된 아미노산 서열과 동일하며, 공통 L쇄의 항체 가변 영역이, 서열번호: 299에 포함되는 가변 영역의 아미노산 서열과 동일하다,(f15) The antibody according to (1), wherein the H chain variable region contained in the antibody variable region described in (1) is the same as the amino acid sequence described in SEQ ID NO: 215 and is included in the antibody variable region described in (2) 103, and the antibody variable region of the common L chain is the same as the amino acid sequence of the variable region contained in SEQ ID NO: 299. The amino acid sequence of SEQ ID NO:
(f16) 〔1〕의 (1)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 215에 기재된 아미노산 서열과 동일하고, 〔1〕의 (2)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 103에 기재된 아미노산 서열과 동일하며, 공통 L쇄의 항체 가변 영역이, 서열번호: 301에 포함되는 가변 영역의 아미노산 서열과 동일하다,(f16) The antibody according to (1), wherein the H chain variable region contained in the antibody variable region described in (1) is the same as the amino acid sequence described in SEQ ID NO: 215 and is included in the antibody variable region described in (2) 103 is the same as the amino acid sequence shown in SEQ ID NO: 103 and the common L chain antibody variable region is the same as the amino acid sequence of the variable region included in SEQ ID NO: 301,
(f17) 〔1〕의 (1)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 215에 기재된 아미노산 서열과 동일하고, 〔1〕의 (2)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 103에 기재된 아미노산 서열과 동일하며, 공통 L쇄의 항체 가변 영역이, 서열번호: 302에 포함되는 가변 영역의 아미노산 서열과 동일하다,(f17) the H chain variable region contained in the antibody variable region of (1) of [1] is the same as the amino acid sequence of SEQ ID NO: 215 and is included in the antibody variable region of (1) 103 is the same as the amino acid sequence shown in SEQ ID NO: 103, and the common L chain antibody variable region is the same as the amino acid sequence of the variable region included in SEQ ID NO: 302,
(f18) 〔1〕의 (1)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 215에 기재된 아미노산 서열과 동일하고, 〔1〕의 (2)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 103에 기재된 아미노산 서열과 동일하며, 공통 L쇄의 항체 가변 영역이, 서열번호: 304에 포함되는 가변 영역의 아미노산 서열과 동일하다,(f18) The H chain variable region contained in the antibody variable region described in (1) of [1] is the same as the amino acid sequence described in SEQ ID NO: 215 and is included in the antibody variable region described in (2) 103, and the antibody variable region of the common L chain is the same as the amino acid sequence of the variable region contained in SEQ ID NO: 304. The amino acid sequence of SEQ ID NO:
(f19) 〔1〕의 (1)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 215에 기재된 아미노산 서열과 동일하고, 〔1〕의 (2)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 103에 기재된 아미노산 서열과 동일하며, 공통 L쇄의 항체 가변 영역이, 서열번호: 306에 포함되는 가변 영역의 아미노산 서열과 동일하다,(f19) the H chain variable region contained in the antibody variable region described in (1) of [1] is the same as the amino acid sequence described in SEQ ID NO: 215 and is included in the antibody variable region according to (2) 103 is the same as the amino acid sequence shown in SEQ ID NO: 103 and the common L chain antibody variable region is the same as the amino acid sequence of the variable region contained in SEQ ID NO: 306,
(f20) 〔1〕의 (1)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 215에 기재된 아미노산 서열과 동일하고, 〔1〕의 (2)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 103에 기재된 아미노산 서열과 동일하며, 공통 L쇄의 항체 가변 영역이, 서열번호: 307에 포함되는 가변 영역의 아미노산 서열과 동일하다,(f20) The H chain variable region contained in the antibody variable region described in (1) of [1] is the same as the amino acid sequence described in SEQ ID NO: 215 and is included in the antibody variable region described in (2) 103, and the antibody variable region of the common L chain is the same as the amino acid sequence of the variable region contained in SEQ ID NO: 307. The amino acid sequence of SEQ ID NO:
(f21) 〔1〕의 (1)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 215에 기재된 아미노산 서열과 동일하고, 〔1〕의 (2)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 103에 기재된 아미노산 서열과 동일하며, 공통 L쇄의 항체 가변 영역이, 서열번호: 309에 포함되는 가변 영역의 아미노산 서열과 동일하다,(f21) The antibody according to (1), wherein the H chain variable region contained in the antibody variable region described in (1) is the same as the amino acid sequence described in SEQ ID NO: 215 and is included in the antibody variable region described in (2) The antibody chain variable region of the common L chain is the same as the amino acid sequence of the variable region contained in SEQ ID NO:
(f22) 〔1〕의 (1)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 215에 기재된 아미노산 서열과 동일하고, 〔1〕의 (2)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 122에 기재된 아미노산 서열과 동일하며, 공통 L쇄의 항체 가변 영역이, 서열번호: 53에 포함되는 가변 영역의 아미노산 서열과 동일하다,(f22) The antibody according to (1), wherein the H chain variable region contained in the antibody variable region described in (1) is the same as the amino acid sequence described in SEQ ID NO: 215 and is included in the antibody variable region described in (2) 122 is the same as the amino acid sequence shown in SEQ ID NO: 122 and the common L chain antibody variable region is the same as the amino acid sequence of the variable region contained in SEQ ID NO: 53,
(f23) 〔1〕의 (1)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 215에 기재된 아미노산 서열과 동일하고, 〔1〕의 (2)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 129에 기재된 아미노산 서열과 동일하며, 공통 L쇄의 항체 가변 영역이, 서열번호: 53에 포함되는 가변 영역의 아미노산 서열과 동일하다,(f23) The H chain variable region contained in the antibody variable region of (1) of [1] is the same as the amino acid sequence of SEQ ID NO: 215 and is included in the antibody variable region of (1) The antibody chain variable region of the common L chain is the same as the amino acid sequence of the variable region contained in SEQ ID NO:
(f24) 〔1〕의 (1)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 215에 기재된 아미노산 서열과 동일하고, 〔1〕의 (2)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 132에 기재된 아미노산 서열과 동일하며, 공통 L쇄의 항체 가변 영역이, 서열번호: 53에 포함되는 가변 영역의 아미노산 서열과 동일하다,(f24) the H chain variable region contained in the antibody variable region of (1) of [1] is the same as the amino acid sequence of SEQ ID NO: 215 and is included in the antibody variable region of (1) 132, and the antibody variable region of the common L chain is the same as the amino acid sequence of the variable region contained in SEQ ID NO: 53. The amino acid sequence of SEQ ID NO:
(f25) 〔1〕의 (1)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 215에 기재된 아미노산 서열과 동일하고, 〔1〕의 (2)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 424에 기재된 아미노산 서열과 동일하며, 공통 L쇄의 항체 가변 영역이, 서열번호: 53에 포함되는 가변 영역의 아미노산 서열과 동일하다(f25) The antibody according to (1), wherein the H chain variable region contained in the antibody variable region described in (1) is the same as the amino acid sequence described in SEQ ID NO: 215 and is included in the antibody variable region according to (2) , The antibody chain variable region of the common L chain is the same as the amino acid sequence of the variable region contained in SEQ ID NO:
(f26) (f1)∼(f25) 중 어느 하나에 기재된 다중특이성 항원 결합 분자가 결합하는 글리피칸 3 및 T 세포 수용체 복합체 상의 에피토프와 각각 중복되는 에피토프에 결합하는 다중특이성 항원 결합 분자이고, 공통 L쇄를 갖는다(f26) a multispecific antigen-binding molecule which binds to an epitope which overlaps with an epitope on the
〔16〕 〔1〕의 (3)에 기재된 Fc 영역이, 서열번호: 23∼26(IgG1∼IgG4)에 기재된 Fc 영역을 구성하는 아미노산 중 어느 하나의 아미노산이 변이되어 있는 Fc 영역인, 〔1〕 내지 〔15〕 중 어느 하나에 기재된 다중특이성 항원 결합 분자.[16] The method according to [1], wherein the Fc region described in (3) of [1] is an Fc region in which any one of the amino acids constituting the Fc region described in SEQ ID NOs: 23 to 26 (IgG1 to IgG4) To < 15 >.
〔17〕 〔1〕의 (3)에 기재된 Fc 영역이, EU 넘버링에 따라 특정되는 하기의 아미노산; [17] The method according to any one of [1] to [3], wherein the Fc region is selected from the following amino acids specified according to EU numbering;
220위, 226위, 229위, 231위, 232위, 233위, 234위, 235위, 236위, 237위, 238위, 239위, 240위, 264위, 265위, 266위, 267위, 269위, 270위, 295위, 296위, 297위, 298위, 299위, 300위, 325위, 327위, 328위, 329위, 330위, 331위, 332위220, 226, 229, 231, 232, 233, 234, 235, 236, 237, 239, 240, 264, 265, 266, 267 , 269, 270, 295, 296, 297, 298, 299, 300, 325, 327, 328, 329, 330, 331, 332
로부터 선택되는, 적어도 1개의 아미노산이 변이되어 있는 Fc 영역인, 〔16〕에 기재된 다중특이성 항원 결합 분자.Wherein the Fc region is an Fc region in which at least one amino acid is mutated.
〔18〕 〔1〕의 (3)에 기재된 Fc 영역이, EU 넘버링에 따라 특정되는 하기의 아미노산; [18] The method according to the above [1], wherein the Fc region described in (3) of [1] is the following amino acid specified according to EU numbering;
234위의 아미노산이 Arg, 235위의 아미노산이 Ala 또는 Arg, 239위의 아미노산이 Lys, 297위의 아미노산이 Ala234 amino acid is Arg, 235 amino acid is Ala or Arg, 239 amino acid is Lys, 297 amino acid is Ala
로부터 선택되는, 적어도 1개의 아미노산을 갖는 Fc 영역인, 〔16〕에 기재된 다중특이성 항원 결합 분자.Is an Fc region having at least one amino acid selected from the group consisting of SEQ ID NOs.
〔19〕 〔1〕의 (3)에 기재된 Fc 영역이, 추가로, 헤테로2량체로 이루어지는 Fc 영역의 형성을 촉진하기 위한 아미노산 변이를 갖는, 〔16〕 내지 〔18〕 중 어느 하나에 기재된 다중특이성 항원 결합 분자.[19] The method according to any one of [16] to [18], wherein the Fc region described in (3) of [1] further has an amino acid mutation for promoting the formation of an Fc region comprising a heterodimer. Specific antigen binding molecule.
〔20〕 헤테로2량체로 이루어지는 Fc 영역이, 하기 (g1) 또는 (g2)의 아미노산 서열의 조합인, 〔19〕에 기재된 다중특이성 항원 결합 분자.[20] The multispecific antigen binding molecule according to [19], wherein the Fc region comprising a heterodimer is a combination of amino acid sequences of (g1) or (g2) below.
(g1) 서열번호: 57에 기재된 아미노산 서열을 갖는 정상 영역의 Fc 영역과 동일한 아미노산 서열과, 서열번호: 58에 기재된 아미노산 서열을 갖는 정상 영역의 Fc 영역과 동일한 아미노산 서열의 조합(g1) the amino acid sequence identical to the Fc region of the normal region having the amino acid sequence set forth in SEQ ID NO: 57 and the amino acid sequence identical to the Fc region having the amino acid sequence set forth in SEQ ID NO: 58
(g2) 서열번호: 60 또는 62에 기재된 아미노산 서열을 갖는 정상 영역의 Fc 영역과 동일한 아미노산 서열과, 서열번호: 61에 기재된 아미노산 서열을 갖는 정상 영역의 Fc 영역과 동일한 아미노산 서열의 조합(g2) an amino acid sequence identical to the Fc region of the normal region having the amino acid sequence of SEQ ID NO: 60 or 62 and a combination of the same amino acid sequence as the Fc region of the normal region having the amino acid sequence of SEQ ID NO:
〔21〕 다중특이성 항원 결합 분자가 이중특이성 항체인, 〔1〕 내지 〔20〕 중 어느 하나에 기재된 다중특이성 항원 결합 분자.[21] The multispecific antigen binding molecule according to any one of [1] to [20], wherein the multispecific antigen binding molecule is a bispecific antibody.
〔22〕 이하의 (h1)∼(h25) 중 어느 하나에 기재된 이중특이성 항체: [22] The bispecific antibody according to any one of (h1) to (h25) below:
(h1) 글리피칸 3에 대한 결합 활성을 갖고, 서열번호 215에 기재된 아미노산 서열을 갖는 항체 H쇄 가변 영역과 서열번호 61에 기재된 아미노산 서열을 갖는 정상 영역으로 이루어지는 항체 H쇄, 및 T 세포 수용체 복합체에 대한 결합 활성을 갖고, 서열번호 424에 기재된 아미노산 서열을 갖는 항체 H쇄 가변 영역과 서열번호 60 또는 62에 기재된 아미노산 서열을 갖는 정상 영역으로 이루어지는 항체 H쇄, 및, 서열번호 53에 기재된 아미노산 서열을 갖는 항체의 공통 L쇄를 갖는, 이중특이성 항체,(h1) an antibody H chain having an antibody H chain variable region having the amino acid sequence shown in SEQ ID NO: 215 and a normal region having the amino acid sequence shown in SEQ ID NO: 61, and a T cell receptor complex , An antibody H chain comprising an antibody H chain variable region having the amino acid sequence shown in SEQ ID NO: 424 and a normal region having the amino acid sequence shown in SEQ ID NO: 60 or 62, and an antibody H chain having the amino acid sequence shown in SEQ ID NO: Lt; RTI ID = 0.0 > L, < / RTI > a bispecific antibody,
(h2) 글리피칸 3에 대한 결합 활성을 갖고, 서열번호 215에 기재된 아미노산 서열을 갖는 항체 H쇄 가변 영역과 서열번호 61에 기재된 아미노산 서열을 갖는 정상 영역으로 이루어지는 항체 H쇄, 및 T 세포 수용체 복합체에 대한 결합 활성을 갖고, 서열번호 103에 기재된 아미노산 서열을 갖는 항체 H쇄 가변 영역과 서열번호 60 또는 62에 기재된 아미노산 서열을 갖는 정상 영역으로 이루어지는 항체 H쇄, 및, 서열번호 53에 기재된 아미노산 서열을 갖는 항체의 공통 L쇄를 갖는, 이중특이성 항체,(h2) an antibody H chain having an antibody H chain variable region having an amino acid sequence shown in SEQ ID NO: 215 and a normal region having an amino acid sequence shown in SEQ ID NO: 61, and a T cell receptor complex , An antibody H chain having an antibody H chain variable region having the amino acid sequence shown in SEQ ID NO: 103 and a normal region having the amino acid sequence shown in SEQ ID NO: 60 or 62, and an antibody H chain having the amino acid sequence shown in SEQ ID NO: Lt; RTI ID = 0.0 > L, < / RTI > a bispecific antibody,
(h3) 글리피칸 3에 대한 결합 활성을 갖고, 서열번호 215에 기재된 아미노산 서열을 갖는 항체 H쇄 가변 영역과 서열번호 61에 기재된 아미노산 서열을 갖는 정상 영역으로 이루어지는 항체 H쇄, 및 T 세포 수용체 복합체에 대한 결합 활성을 갖고, 서열번호 103에 기재된 아미노산 서열을 갖는 항체 H쇄 가변 영역과 서열번호 60 또는 62에 기재된 아미노산 서열을 갖는 정상 영역으로 이루어지는 항체 H쇄, 및, 서열번호 299에 기재된 아미노산 서열을 갖는 항체의 공통 L쇄를 갖는, 이중특이성 항체,(h3) an antibody H chain having an antibody H chain variable region having an amino acid sequence shown in SEQ ID NO: 215 and a normal region having an amino acid sequence shown in SEQ ID NO: 61, and an antibody H chain having a binding activity to
(h4) 글리피칸 3에 대한 결합 활성을 갖고, 서열번호 215에 기재된 아미노산 서열을 갖는 항체 H쇄 가변 영역과 서열번호 61에 기재된 아미노산 서열을 갖는 정상 영역으로 이루어지는 항체 H쇄, 및 T 세포 수용체 복합체에 대한 결합 활성을 갖고, 서열번호 103에 기재된 아미노산 서열을 갖는 항체 H쇄 가변 영역과 서열번호 60 또는 62에 기재된 아미노산 서열을 갖는 정상 영역으로 이루어지는 항체 H쇄, 및, 서열번호 301에 기재된 아미노산 서열을 갖는 항체의 공통 L쇄를 갖는, 이중특이성 항체,(h4) an antibody H chain having an antibody H chain variable region having an amino acid sequence shown in SEQ ID NO: 215 and a normal region having an amino acid sequence shown in SEQ ID NO: 61, and a T cell receptor complex having a binding activity to
(h5) 글리피칸 3에 대한 결합 활성을 갖고, 서열번호 215에 기재된 아미노산 서열을 갖는 항체 H쇄 가변 영역과 서열번호 61에 기재된 아미노산 서열을 갖는 정상 영역으로 이루어지는 항체 H쇄, 및 T 세포 수용체 복합체에 대한 결합 활성을 갖고, 서열번호 103에 기재된 아미노산 서열을 갖는 항체 H쇄 가변 영역과 서열번호 60 또는 62에 기재된 아미노산 서열을 갖는 정상 영역으로 이루어지는 항체 H쇄, 및, 서열번호 302에 기재된 아미노산 서열을 갖는 항체의 공통 L쇄를 갖는, 이중특이성 항체,(h5) an antibody H chain having an antibody H chain variable region having an amino acid sequence shown in SEQ ID NO: 215 and a normal region having an amino acid sequence shown in SEQ ID NO: 61, and a T cell receptor complex , An antibody H chain having an antibody H chain variable region having the amino acid sequence shown in SEQ ID NO: 103 and a normal region having the amino acid sequence shown in SEQ ID NO: 60 or 62, and an antibody H chain having the amino acid sequence shown in SEQ ID NO: Lt; RTI ID = 0.0 > L, < / RTI > a bispecific antibody,
(h6) 글리피칸 3에 대한 결합 활성을 갖고, 서열번호 215에 기재된 아미노산 서열을 갖는 항체 H쇄 가변 영역과 서열번호 61에 기재된 아미노산 서열을 갖는 정상 영역으로 이루어지는 항체 H쇄, 및 T 세포 수용체 복합체에 대한 결합 활성을 갖고, 서열번호 103에 기재된 아미노산 서열을 갖는 항체 H쇄 가변 영역과 서열번호 60 또는 62에 기재된 아미노산 서열을 갖는 정상 영역으로 이루어지는 항체 H쇄, 및, 서열번호 304에 기재된 아미노산 서열을 갖는 항체의 공통 L쇄를 갖는, 이중특이성 항체,(h6) an antibody H chain having an antibody H chain variable region having an amino acid sequence shown in SEQ ID NO: 215 and a normal region having an amino acid sequence shown in SEQ ID NO: 61, and a T cell receptor complex , An antibody H chain having an antibody H chain variable region having the amino acid sequence shown in SEQ ID NO: 103 and a normal region having the amino acid sequence shown in SEQ ID NO: 60 or 62, and an antibody H chain having the amino acid sequence shown in SEQ ID NO: Lt; RTI ID = 0.0 > L, < / RTI > a bispecific antibody,
(h7) 글리피칸 3에 대한 결합 활성을 갖고, 서열번호 215에 기재된 아미노산 서열을 갖는 항체 H쇄 가변 영역과 서열번호 61에 기재된 아미노산 서열을 갖는 정상 영역으로 이루어지는 항체 H쇄, 및 T 세포 수용체 복합체에 대한 결합 활성을 갖고, 서열번호 103에 기재된 아미노산 서열을 갖는 항체 H쇄 가변 영역과 서열번호 60 또는 62에 기재된 아미노산 서열을 갖는 정상 영역으로 이루어지는 항체 H쇄, 및, 서열번호 306에 기재된 아미노산 서열을 갖는 항체의 공통 L쇄를 갖는, 이중특이성 항체,(h7) an antibody H chain having an antibody H chain variable region having an amino acid sequence shown in SEQ ID NO: 215 and a normal region having an amino acid sequence shown in SEQ ID NO: 61, and a T cell receptor complex , An antibody H chain comprising an antibody H chain variable region having an amino acid sequence shown in SEQ ID NO: 103 and a normal region having an amino acid sequence shown in SEQ ID NO: 60 or 62, and an antibody H chain having an amino acid sequence represented by SEQ ID NO: Lt; RTI ID = 0.0 > L, < / RTI > a bispecific antibody,
(h8) 글리피칸 3에 대한 결합 활성을 갖고, 서열번호 215에 기재된 아미노산 서열을 갖는 항체 H쇄 가변 영역과 서열번호 61에 기재된 아미노산 서열을 갖는 정상 영역으로 이루어지는 항체 H쇄, 및 T 세포 수용체 복합체에 대한 결합 활성을 갖고, 서열번호 103에 기재된 아미노산 서열을 갖는 항체 H쇄 가변 영역과 서열번호 60 또는 62에 기재된 아미노산 서열을 갖는 정상 영역으로 이루어지는 항체 H쇄, 및, 서열번호 307에 기재된 아미노산 서열을 갖는 항체의 공통 L쇄를 갖는, 이중특이성 항체,(h8) an antibody H chain having an antibody H chain variable region having an amino acid sequence shown in SEQ ID NO: 215 and a normal region having an amino acid sequence shown in SEQ ID NO: 61, and a T cell receptor complex having a binding activity to
(h9) 글리피칸 3에 대한 결합 활성을 갖고, 서열번호 215에 기재된 아미노산 서열을 갖는 항체 H쇄 가변 영역과 서열번호 61에 기재된 아미노산 서열을 갖는 정상 영역으로 이루어지는 항체 H쇄, 및 T 세포 수용체 복합체에 대한 결합 활성을 갖고, 서열번호 103에 기재된 아미노산 서열을 갖는 항체 H쇄 가변 영역과 서열번호 60 또는 62에 기재된 아미노산 서열을 갖는 정상 영역으로 이루어지는 항체 H쇄, 및, 서열번호 309에 기재된 아미노산 서열을 갖는 항체의 공통 L쇄를 갖는, 이중특이성 항체,(h9) an antibody H chain having an antibody H chain variable region having an amino acid sequence shown in SEQ ID NO: 215 and a normal region having an amino acid sequence shown in SEQ ID NO: 61, and a T cell receptor complex , An antibody H chain having an antibody H chain variable region having an amino acid sequence shown in SEQ ID NO: 103 and a normal region having an amino acid sequence shown in SEQ ID NO: 60 or 62, and an antibody H chain having an amino acid sequence shown in SEQ ID NO: Lt; RTI ID = 0.0 > L, < / RTI > a bispecific antibody,
(h10) 글리피칸 3에 대한 결합 활성을 갖고, 서열번호 215에 기재된 아미노산 서열을 갖는 항체 H쇄 가변 영역과 서열번호 61에 기재된 아미노산 서열을 갖는 정상 영역으로 이루어지는 항체 H쇄, 및 T 세포 수용체 복합체에 대한 결합 활성을 갖고, 서열번호 122에 기재된 아미노산 서열을 갖는 항체 H쇄 가변 영역과 서열번호 60 또는 62에 기재된 아미노산 서열을 갖는 정상 영역으로 이루어지는 항체 H쇄, 및, 서열번호 53에 기재된 아미노산 서열을 갖는 항체의 공통 L쇄를 갖는, 이중특이성 항체,(h10) an antibody H chain having an antibody H chain variable region having an amino acid sequence shown in SEQ ID NO: 215 and a normal region having an amino acid sequence shown in SEQ ID NO: 61, and an antibody H chain having a binding activity to
(h11) 글리피칸 3에 대한 결합 활성을 갖고, 서열번호 215에 기재된 아미노산 서열을 갖는 항체 H쇄 가변 영역과 서열번호 61에 기재된 아미노산 서열을 갖는 정상 영역으로 이루어지는 항체 H쇄, 및 T 세포 수용체 복합체에 대한 결합 활성을 갖고, 서열번호 129에 기재된 아미노산 서열을 갖는 항체 H쇄 가변 영역과 서열번호 60 또는 62에 기재된 아미노산 서열을 갖는 정상 영역으로 이루어지는 항체 H쇄, 및, 서열번호 53에 기재된 아미노산 서열을 갖는 항체의 공통 L쇄를 갖는, 이중특이성 항체,(h11) an antibody H chain having an antibody H chain variable region having an amino acid sequence shown in SEQ ID NO: 215 and a normal region having an amino acid sequence shown in SEQ ID NO: 61, and a T cell receptor complex , An antibody H chain having an antibody H chain variable region having the amino acid sequence shown in SEQ ID NO: 129 and a normal region having the amino acid sequence shown in SEQ ID NO: 60 or 62, and an antibody H chain having the amino acid sequence shown in SEQ ID NO: Lt; RTI ID = 0.0 > L, < / RTI > a bispecific antibody,
(h12) 글리피칸 3에 대한 결합 활성을 갖고, 서열번호 215에 기재된 아미노산 서열을 갖는 항체 H쇄 가변 영역과 서열번호 61에 기재된 아미노산 서열을 갖는 정상 영역으로 이루어지는 항체 H쇄, 및 T 세포 수용체 복합체에 대한 결합 활성을 갖고, 서열번호 132에 기재된 아미노산 서열을 갖는 항체 H쇄 가변 영역과 서열번호 60 또는 62에 기재된 아미노산 서열을 갖는 정상 영역으로 이루어지는 항체 H쇄, 및, 서열번호 53에 기재된 아미노산 서열을 갖는 항체의 공통 L쇄를 갖는, 이중특이성 항체,(h12) an antibody H chain having an antibody H chain variable region having an amino acid sequence shown in SEQ ID NO: 215 and a normal region having an amino acid sequence shown in SEQ ID NO: 61, and a T cell receptor complex , An antibody H chain having an antibody H chain variable region having the amino acid sequence shown in SEQ ID NO: 132 and a normal region having the amino acid sequence shown in SEQ ID NO: 60 or 62, and an antibody H chain having the amino acid sequence shown in SEQ ID NO: Lt; RTI ID = 0.0 > L, < / RTI > a bispecific antibody,
(h13) 글리피칸 3에 대한 결합 활성을 갖고, 서열번호 197에 기재된 아미노산 서열을 갖는 항체 H쇄 가변 영역과 서열번호 61에 기재된 아미노산 서열을 갖는 정상 영역으로 이루어지는 항체 H쇄, 및 T 세포 수용체 복합체에 대한 결합 활성을 갖고, 서열번호 128에 기재된 아미노산 서열을 갖는 항체 H쇄 가변 영역과 서열번호 60 또는 62에 기재된 아미노산 서열을 갖는 정상 영역으로 이루어지는 항체 H쇄, 및, 서열번호 299에 기재된 아미노산 서열을 갖는 항체의 공통 L쇄를 갖는, 이중특이성 항체,(h13) an antibody H chain having an antibody H chain variable region having an amino acid sequence shown in SEQ ID NO: 197 and a normal region having an amino acid sequence shown in SEQ ID NO: 61, and an antibody H chain having a binding activity for
(h14) 글리피칸 3에 대한 결합 활성을 갖고, 서열번호 197에 기재된 아미노산 서열을 갖는 항체 H쇄 가변 영역과 서열번호 61에 기재된 아미노산 서열을 갖는 정상 영역으로 이루어지는 항체 H쇄, 및 T 세포 수용체 복합체에 대한 결합 활성을 갖고, 서열번호 128에 기재된 아미노산 서열을 갖는 항체 H쇄 가변 영역과 서열번호 60 또는 62에 기재된 아미노산 서열을 갖는 정상 영역으로 이루어지는 항체 H쇄, 및, 서열번호 310에 기재된 아미노산 서열을 갖는 항체의 공통 L쇄를 갖는, 이중특이성 항체,(h14) an antibody H chain having an antibody H chain variable region having an amino acid sequence shown in SEQ ID NO: 197 and a normal region having an amino acid sequence shown in SEQ ID NO: 61, and a T cell receptor complex , An antibody H chain having an antibody H chain variable region having the amino acid sequence shown in SEQ ID NO: 128 and a normal region having the amino acid sequence shown in SEQ ID NO: 60 or 62, and an antibody H chain having the amino acid sequence shown in SEQ ID NO: Lt; RTI ID = 0.0 > L, < / RTI > a bispecific antibody,
(h15) 글리피칸 3에 대한 결합 활성을 갖고, 서열번호 197에 기재된 아미노산 서열을 갖는 항체 H쇄 가변 영역과 서열번호 61에 기재된 아미노산 서열을 갖는 정상 영역으로 이루어지는 항체 H쇄, 및 T 세포 수용체 복합체에 대한 결합 활성을 갖고, 서열번호 128에 기재된 아미노산 서열을 갖는 항체 H쇄 가변 영역과 서열번호 60 또는 62에 기재된 아미노산 서열을 갖는 정상 영역으로 이루어지는 항체 H쇄, 및, 서열번호 319에 기재된 아미노산 서열을 갖는 항체의 공통 L쇄를 갖는, 이중특이성 항체,(h15) an antibody H chain having an antibody H chain variable region having an amino acid sequence shown in SEQ ID NO: 197 and a normal region having an amino acid sequence shown in SEQ ID NO: 61, and a T cell receptor complex , An antibody H chain having an antibody H chain variable region having the amino acid sequence shown in SEQ ID NO: 128 and a normal region having the amino acid sequence shown in SEQ ID NO: 60 or 62, and an antibody H chain having the amino acid sequence shown in SEQ ID NO: Lt; RTI ID = 0.0 > L, < / RTI > a bispecific antibody,
(h16) 글리피칸 3에 대한 결합 활성을 갖고, 서열번호 197에 기재된 아미노산 서열을 갖는 항체 H쇄 가변 영역과 서열번호 61에 기재된 아미노산 서열을 갖는 정상 영역으로 이루어지는 항체 H쇄, 및 T 세포 수용체 복합체에 대한 결합 활성을 갖고, 서열번호 128에 기재된 아미노산 서열을 갖는 항체 H쇄 가변 영역과 서열번호 60 또는 62에 기재된 아미노산 서열을 갖는 정상 영역으로 이루어지는 항체 H쇄, 및, 서열번호 53에 기재된 아미노산 서열을 갖는 항체의 공통 L쇄를 갖는, 이중특이성 항체,(h16) an antibody H chain having an antibody H chain variable region having an amino acid sequence shown in SEQ ID NO: 197 and a normal region having an amino acid sequence shown in SEQ ID NO: 61, and a T cell receptor complex , An antibody H chain comprising an antibody H chain variable region having the amino acid sequence shown in SEQ ID NO: 128 and a normal region having the amino acid sequence shown in SEQ ID NO: 60 or 62, and an antibody H chain having the amino acid sequence shown in SEQ ID NO: Lt; RTI ID = 0.0 > L, < / RTI > a bispecific antibody,
(h17) 글리피칸 3에 대한 결합 활성을 갖고, 서열번호 211에 기재된 아미노산 서열을 갖는 항체 H쇄 가변 영역과 서열번호 61에 기재된 아미노산 서열을 갖는 정상 영역으로 이루어지는 항체 H쇄, 및 T 세포 수용체 복합체에 대한 결합 활성을 갖고, 서열번호 142에 기재된 아미노산 서열을 갖는 항체 H쇄 가변 영역과 서열번호 60 또는 62에 기재된 아미노산 서열을 갖는 정상 영역으로 이루어지는 항체 H쇄, 및, 서열번호 299에 기재된 아미노산 서열을 갖는 항체의 공통 L쇄를 갖는, 이중특이성 항체,(h17) an antibody H chain having an antibody H chain variable region having an amino acid sequence shown in SEQ ID NO: 211 and a normal region having an amino acid sequence shown in SEQ ID NO: 61, and a T cell receptor complex An antibody H chain having an antibody H chain variable region having the amino acid sequence shown in SEQ ID NO: 142 and a normal region having the amino acid sequence shown in SEQ ID NO: 60 or 62, and an antibody H chain having the amino acid sequence shown in SEQ ID NO: Lt; RTI ID = 0.0 > L, < / RTI > a bispecific antibody,
(h18) 글리피칸 3에 대한 결합 활성을 갖고, 서열번호 211에 기재된 아미노산 서열을 갖는 항체 H쇄 가변 영역과 서열번호 61에 기재된 아미노산 서열을 갖는 정상 영역으로 이루어지는 항체 H쇄, 및 T 세포 수용체 복합체에 대한 결합 활성을 갖고, 서열번호 142에 기재된 아미노산 서열을 갖는 항체 H쇄 가변 영역과 서열번호 60 또는 62에 기재된 아미노산 서열을 갖는 정상 영역으로 이루어지는 항체 H쇄, 및, 서열번호 223에 기재된 아미노산 서열을 갖는 항체의 공통 L쇄를 갖는, 이중특이성 항체,(h18) an antibody H chain having an antibody H chain variable region having an amino acid sequence shown in SEQ ID NO: 211 and a normal region having an amino acid sequence shown in SEQ ID NO: 61, and a T cell receptor complex , An antibody H chain comprising an antibody H chain variable region having the amino acid sequence shown in SEQ ID NO: 142 and a normal region having the amino acid sequence shown in SEQ ID NO: 60 or 62, and an antibody H chain having the amino acid sequence shown in SEQ ID NO: Lt; RTI ID = 0.0 > L, < / RTI > a bispecific antibody,
(h19) 글리피칸 3에 대한 결합 활성을 갖고, 서열번호 211에 기재된 아미노산 서열을 갖는 항체 H쇄 가변 영역과 서열번호 61에 기재된 아미노산 서열을 갖는 정상 영역으로 이루어지는 항체 H쇄, 및 T 세포 수용체 복합체에 대한 결합 활성을 갖고, 서열번호 144에 기재된 아미노산 서열을 갖는 항체 H쇄 가변 영역과 서열번호 60 또는 62에 기재된 아미노산 서열을 갖는 정상 영역으로 이루어지는 항체 H쇄, 및, 서열번호 223에 기재된 아미노산 서열을 갖는 항체의 공통 L쇄를 갖는, 이중특이성 항체,(h19) an antibody H chain having an antibody H chain variable region having an amino acid sequence shown in SEQ ID NO: 211 and a normal region having an amino acid sequence shown in SEQ ID NO: 61, and a T cell receptor complex , An antibody H chain comprising an antibody H chain variable region having the amino acid sequence shown in SEQ ID NO: 144 and a normal region having the amino acid sequence shown in SEQ ID NO: 60 or 62, and an antibody H chain having the amino acid sequence shown in SEQ ID NO: Lt; RTI ID = 0.0 > L, < / RTI > a bispecific antibody,
(h20) 글리피칸 3에 대한 결합 활성을 갖고, 서열번호 206에 기재된 아미노산 서열을 갖는 항체 H쇄 가변 영역과 서열번호 61에 기재된 아미노산 서열을 갖는 정상 영역으로 이루어지는 항체 H쇄, 및 T 세포 수용체 복합체에 대한 결합 활성을 갖고, 서열번호 144에 기재된 아미노산 서열을 갖는 항체 H쇄 가변 영역과 서열번호 60 또는 62에 기재된 아미노산 서열을 갖는 정상 영역으로 이루어지는 항체 H쇄, 및, 서열번호 223에 기재된 아미노산 서열을 갖는 항체의 공통 L쇄를 갖는, 이중특이성 항체,(h20) an antibody H chain having an antibody H chain variable region having an amino acid sequence shown in SEQ ID NO: 206 and a normal region having an amino acid sequence shown in SEQ ID NO: 61, and a T cell receptor complex , An antibody H chain comprising an antibody H chain variable region having the amino acid sequence shown in SEQ ID NO: 144 and a normal region having the amino acid sequence shown in SEQ ID NO: 60 or 62, and an antibody H chain having the amino acid sequence shown in SEQ ID NO: Lt; RTI ID = 0.0 > L, < / RTI > a bispecific antibody,
(h21) 글리피칸 3에 대한 결합 활성을 갖고, 서열번호 206에 기재된 아미노산 서열을 갖는 항체 H쇄 가변 영역과 서열번호 61에 기재된 아미노산 서열을 갖는 정상 영역으로 이루어지는 항체 H쇄, 및 T 세포 수용체 복합체에 대한 결합 활성을 갖고, 서열번호 142에 기재된 아미노산 서열을 갖는 항체 H쇄 가변 영역과 서열번호 60 또는 62에 기재된 아미노산 서열을 갖는 정상 영역으로 이루어지는 항체 H쇄, 및, 서열번호 223에 기재된 아미노산 서열을 갖는 항체의 공통 L쇄를 갖는, 이중특이성 항체,(h21) an antibody H chain having an antibody H chain variable region having the amino acid sequence shown in SEQ ID NO: 206 and a normal region having the amino acid sequence shown in SEQ ID NO: 61, and a T cell receptor complex , An antibody H chain comprising an antibody H chain variable region having the amino acid sequence shown in SEQ ID NO: 142 and a normal region having the amino acid sequence shown in SEQ ID NO: 60 or 62, and an antibody H chain having the amino acid sequence shown in SEQ ID NO: Lt; RTI ID = 0.0 > L, < / RTI > a bispecific antibody,
(h22) 글리피칸 3에 대한 결합 활성을 갖고, 서열번호 206에 기재된 아미노산 서열을 갖는 항체 H쇄 가변 영역과 서열번호 61에 기재된 아미노산 서열을 갖는 정상 영역으로 이루어지는 항체 H쇄, 및 T 세포 수용체 복합체에 대한 결합 활성을 갖고, 서열번호 164에 기재된 아미노산 서열을 갖는 항체 H쇄 가변 영역과 서열번호 60 또는 62에 기재된 아미노산 서열을 갖는 정상 영역으로 이루어지는 항체 H쇄, 및, 서열번호 223에 기재된 아미노산 서열을 갖는 항체의 공통 L쇄를 갖는, 이중특이성 항체,(h22) an antibody H chain having an antibody H chain variable region having an amino acid sequence shown in SEQ ID NO: 206 and a normal region having an amino acid sequence shown in SEQ ID NO: 61, and a T cell receptor complex , An antibody H chain having an antibody H chain variable region having the amino acid sequence shown in SEQ ID NO: 164 and a normal region having the amino acid sequence shown in SEQ ID NO: 60 or 62, and an antibody H chain having the amino acid sequence shown in SEQ ID NO: Lt; RTI ID = 0.0 > L, < / RTI > a bispecific antibody,
(h23) 글리피칸 3에 대한 결합 활성을 갖고, 서열번호 206에 기재된 아미노산 서열을 갖는 항체 H쇄 가변 영역과 서열번호 61에 기재된 아미노산 서열을 갖는 정상 영역으로 이루어지는 항체 H쇄, 및 T 세포 수용체 복합체에 대한 결합 활성을 갖고, 서열번호 168에 기재된 아미노산 서열을 갖는 항체 H쇄 가변 영역과 서열번호 60 또는 62에 기재된 아미노산 서열을 갖는 정상 영역으로 이루어지는 항체 H쇄, 및, 서열번호 223에 기재된 아미노산 서열을 갖는 항체의 공통 L쇄를 갖는, 이중특이성 항체,(h23) an antibody H chain having an antibody H chain variable region having an amino acid sequence shown in SEQ ID NO: 206 and a normal region having an amino acid sequence shown in SEQ ID NO: 61, and a T cell receptor complex , An antibody H chain having an antibody H chain variable region having the amino acid sequence shown in SEQ ID NO: 168 and a normal region having the amino acid sequence shown in SEQ ID NO: 60 or 62, and an antibody H chain having the amino acid sequence shown in SEQ ID NO: Lt; RTI ID = 0.0 > L, < / RTI > a bispecific antibody,
(h24) 글리피칸 3에 대한 결합 활성을 갖고, 서열번호 211에 기재된 아미노산 서열을 갖는 항체 H쇄 가변 영역과 서열번호 61에 기재된 아미노산 서열을 갖는 정상 영역으로 이루어지는 항체 H쇄, 및 T 세포 수용체 복합체에 대한 결합 활성을 갖고, 서열번호 164에 기재된 아미노산 서열을 갖는 항체 H쇄 가변 영역과 서열번호 60 또는 62에 기재된 아미노산 서열을 갖는 정상 영역으로 이루어지는 항체 H쇄, 및, 서열번호 223에 기재된 아미노산 서열을 갖는 항체의 공통 L쇄를 갖는, 이중특이성 항체,(h24) an antibody H chain having an antibody H chain variable region having an amino acid sequence shown in SEQ ID NO: 211 and a normal region having an amino acid sequence shown in SEQ ID NO: 61, and a T cell receptor complex , An antibody H chain having an antibody H chain variable region having the amino acid sequence shown in SEQ ID NO: 164 and a normal region having the amino acid sequence shown in SEQ ID NO: 60 or 62, and an antibody H chain having the amino acid sequence shown in SEQ ID NO: Lt; RTI ID = 0.0 > L, < / RTI > a bispecific antibody,
(h25) 글리피칸 3에 대한 결합 활성을 갖고, 서열번호 211에 기재된 아미노산 서열을 갖는 항체 H쇄 가변 영역과 서열번호 61에 기재된 아미노산 서열을 갖는 정상 영역으로 이루어지는 항체 H쇄, 및 T 세포 수용체 복합체에 대한 결합 활성을 갖고, 서열번호 168에 기재된 아미노산 서열을 갖는 항체 H쇄 가변 영역과 서열번호 60 또는 62에 기재된 아미노산 서열을 갖는 정상 영역으로 이루어지는 항체 H쇄, 및, 서열번호 223에 기재된 아미노산 서열을 갖는 항체의 공통 L쇄를 갖는, 이중특이성 항체(h25) an antibody H chain having an antibody H chain variable region having an amino acid sequence shown in SEQ ID NO: 211 and a normal region having an amino acid sequence shown in SEQ ID NO: 61, and a T cell receptor complex having a binding activity for
〔23〕 〔1〕 내지 〔20〕 중 어느 하나에 기재된 다중특이성 항원 결합 분자, 또는 〔21〕 또는 〔22〕에 기재된 이중특이성 항체를 코딩하는 핵산.[23] a nucleic acid encoding a multispecific antigen-binding molecule according to any one of [1] to [20], or a bispecific antibody according to [21] or [22]
〔24〕 〔23〕에 기재된 핵산이 도입된 벡터.[24] a vector into which the nucleic acid according to [23] is introduced.
〔25〕 〔23〕에 기재된 핵산, 또는 〔24〕에 기재된 벡터를 포함하는 세포.[25] A cell comprising the nucleic acid according to [23], or the vector according to [24].
〔26〕 〔25〕에 기재된 세포를 배양하는 것에 의해, 〔1〕 내지 〔20〕 중 어느 하나에 기재된 다중특이성 항원 결합 분자, 또는 〔21〕 또는 〔22〕에 기재된 이중특이성 항체를 제조하는 방법.[26] A method for producing a multispecific antigen binding molecule according to any one of [1] to [20], or a bispecific antibody according to [21] or [22], by culturing the cells according to [25] .
〔27〕 〔26〕에 기재된 방법에 의해 제조된, 다중특이성 항원 결합 분자, 또는 이중특이성 항체.[27] A multispecific antigen binding molecule, or a bispecific antibody produced by the method described in [26].
〔28〕 〔1〕 내지 〔20〕 중 어느 하나에 기재된 다중특이성 항원 결합 분자, 또는 〔21〕 또는 〔22〕에 기재된 이중특이성 항체, 및 약학적으로 허용되는 담체를 포함하는 의약 조성물.[28] A pharmaceutical composition comprising the multispecific antigen binding molecule according to any one of [1] to [20], or the bispecific antibody according to [21] or [22], and a pharmaceutically acceptable carrier.
〔29〕 세포상해를 유도하는, 〔28〕에 기재된 의약 조성물.[29] A medicinal composition according to [28], which induces cytotoxicity.
〔30〕 세포상해가 T 세포 의존적 세포상해인, 〔29〕에 기재된 의약 조성물.[30] The pharmaceutical composition according to [29], wherein the cytotoxic effect is a T cell dependent cytotoxicity.
〔31〕 〔1〕 내지 〔20〕 중 어느 하나에 기재된 다중특이성 항원 결합 분자, 또는 〔21〕 또는 〔22〕에 기재된 이중특이성 항체가 필요한 환자에게 투여하기 위한, 〔28〕에 기재된 의약 조성물.[31] The pharmaceutical composition according to [28], which is for administration to a patient in need of the multispecific antigen binding molecule according to any one of [1] to [20], or a bispecific antibody according to [21] or [22].
또한 본 발명은, 본 발명의 다중특이성 항원 결합 분자 또는 본 발명의 제조 방법에 의해 제조된 다중특이성 항원 결합 분자를 포함하는, 본 발명의 방법에 이용하기 위한 키트에 관한 것이다. 또한 본 발명은, 본 발명의 다중특이성 항원 결합 분자 또는 본 발명의 제조 방법에 의해 제조된 다중특이성 항원 결합 분자의, 세포상해 활성을 활성화하기 위한 의약 조성물의 제조에 있어서의 사용에 관한 것이다. 또한 본 발명은, 본 발명의 방법에 사용하기 위한, 본 발명의 다중특이성 항원 결합 분자 또는 본 발명의 제조 방법에 의해 제조된 다중특이성 항원 결합 분자에 관한 것이다. 여기에서 다중특이성 항원 결합 분자에는, 본 발명의 이중특이성 항체가 포함된다.The present invention also relates to a kit for use in the method of the invention, comprising a multispecific antigen binding molecule of the invention or a multispecific antigen binding molecule produced by the method of manufacture of the invention. The present invention also relates to the use of a multispecific antigen binding molecule of the invention or a multispecific antigen binding molecule produced by the method of the invention in the manufacture of a medicinal composition for activating cytotoxic activity. The present invention also relates to a multispecific antigen binding molecule of the invention or a multispecific antigen binding molecule produced by the method of the invention for use in the methods of the invention. Wherein the multispecific antigen binding molecule comprises a bispecific antibody of the invention.
또한 본 발명은, 하기의 도메인; The present invention also relates to the following domains;
(1) 글리피칸 3 결합 활성을 갖는 항체 가변 영역을 포함하는 도메인, 및(1) a domain comprising an antibody variable
(2) T 세포 수용체 복합체 결합 활성을 갖는 항체 가변 영역을 포함하는 도메인(2) a domain comprising an antibody variable region having T cell receptor complex binding activity
을 포함하고, (1)의 가변 영역과 (2)의 가변 영역에 포함되는 L쇄 가변 영역이 공통의 아미노산 서열인 다중특이성 항원 결합 분자에 관한 것이다. 또한 본 발명은, (1)의 도메인, 즉, 해당 다중특이성 항원 결합 분자에 포함되는, 글리피칸 3 결합 활성을 갖는 항체의 중쇄 및/또는 경쇄의 가변 영역을 포함하는 도메인에 관한 것이다. 또한 본 발명은, (2)의 도메인, 즉, 해당 다중특이성 항원 결합 분자에 포함되는, T 세포 수용체 복합체 결합 활성을 갖는 항체 가변 영역을 포함하는 도메인에 관한 것이다. (1) 및 (2)의 도메인의 상세는, 상기의 〔1〕∼〔22〕에 기재로 한 것이어도 된다. 해당 다중특이성 항원 결합 분자는, 이중특이성 항체여도 된다. 또한 해당 다중특이성 항원 결합 분자는, Fc 영역을 포함하는 도메인을 추가로 포함하고 있어도 되고, 해당 Fc 영역은 Fcγ 수용체에 대한 결합 활성이 저하되어 있어도 된다. Fc 영역을 포함하는 도메인의 상세는, 예를 들면 상기 〔1〕∼〔22〕에 기재로 한 것이어도 된다. 또한 본 발명은, 해당 다중특이성 항원 결합 분자 또는 해당 도메인을 코딩하는 핵산, 해당 핵산이 도입된 벡터, 해당 핵산 또는 해당 벡터를 포함하는 세포, 해당 세포를 배양하는 것에 의해, 해당 다중특이성 항원 결합 분자를 제조하는 방법, 해당 방법에 의해 제조된 다중특이성 항원 결합 분자 또는 글리피칸 3 또는 T 세포 수용체 복합체에 결합 활성을 갖는 항체 가변 영역을 포함하는 도메인에 관한 것이다. 또한 본 발명은, 해당 다중특이성 항원 결합 분자 및 약학적으로 허용되는 담체를 포함하는 의약 조성물에 관한 것이다. 해당 의약 조성물은 세포상해를 유도하는 것이어도 되고, 또한 해당 세포상해는 T 세포 의존적 세포상해여도 되고, 해당 다중특이성 항원 결합 분자가 필요한 환자에게 투여하기 위한 것이어도 된다., Wherein the variable region of (1) and the variable region of the variable region of (2) comprise a common amino acid sequence. The present invention also relates to a domain of (1), that is, a domain comprising a variable region of heavy chain and / or light chain of an antibody having a
또한 본 발명은, 상기 〔14〕의 (e1)∼(e25) 중 어느 하나에 기재된 다중특이성 항원 결합 분자가 결합하는 글리피칸 3 및 T 세포 수용체 복합체 상의 에피토프와 각각 중복 및/또는 경합하는 에피토프에 결합하는 다중특이성 항원 결합 분자, 및 상기 〔15〕의 (f1)∼(f25) 중 어느 하나에 기재된 다중특이성 항원 결합 분자가 결합하는 글리피칸 3 및 T 세포 수용체 복합체 상의 에피토프와 각각 중복 및/또는 경합하는 에피토프에 결합하는 다중특이성 항원 결합 분자도 제공한다.The present invention also relates to an epitope which overlaps and / or compares with an epitope on the
또한 상기 〔20〕 (g1) 및 (g2)에 있어서는, 2개의 Fc 영역 중, 전자의 Fc 영역이 글리피칸 3에 대한 결합 활성을 갖는 항체 H쇄에 포함되고, 후자의 Fc 영역이 T 세포 수용체 복합체에 대한 결합 활성을 갖는 항체 H쇄에 포함되어 있어도 되며, 전자의 Fc 영역이 T 세포 수용체 복합체에 대한 결합 활성을 갖는 항체 H쇄에 포함되고, 후자의 Fc 영역이 글리피칸 3에 대한 결합 활성을 갖는 항체 H쇄에 포함되어 있어도 된다.In the above [20] (g1) and (g2), it is preferable that among the two Fc regions, the Fc region of the former is included in the antibody H chain having the binding activity to
본 발명에 의해, 산생 효율이 높은 분자형으로 하면서, BiTE가 가지는 강한 항종양 활성과, 암항원 비의존적으로 사이토카인 폭풍 등을 유도하지 않는다는 안전성상의 우수한 성질이 유지되고, 또한 긴 혈중 반감기를 가지는 새로운 다중특이성 항원 결합 분자가 제공되었다. 본 발명의 다중특이성 항원 결합 분자를 유효 성분으로서 포함하는 세포상해 활성을 활성화하는 의약 조성물이 글리피칸 3 발현 암세포를 포함하는 암조직을 표적으로 해서 세포상해를 초래하여, 다양한 암을 치료 또는 예방할 수 있다. 환자에게 있어서도, 안전성이 높을 뿐만 아니라, 신체적 부담이 적고 편리성도 높다고 하는, 바람직한 치료를 할 수 있게 된다.According to the present invention, it is possible to maintain a superior safety property that does not induce a strong antitumor activity of BiTE and a cytokine storm dependent on cancer antigens, while maintaining a high production efficiency in a molecular form, New multispecific antigen binding molecules have been provided. The pharmaceutical composition for activating the cytotoxic activity comprising the multispecific antigen binding molecule of the present invention as an active ingredient can be used for the treatment of various cancers by targeting cancer tissues including cancer
도 1은 a: ERY22의 모식도, b: ERY27의 모식도를 나타내는 도면이다.
도 2는 NCI-H446을 표적 세포로 한 경우에 있어서의 GPC3_ERY22_rCE115와 GPC3_ERY27_hCE115의 세포상해 활성을 나타내는 그래프이다. 검은 마름모(◆)는 GPC3_ERY22_rCE115, 검은 삼각(▲)은 GPC3_ERY27_hCE115의 세포상해 활성을 각각 나타낸다.
도 3은 PC-10을 표적 세포로 한 경우에 있어서의 GPC3_ERY22_rCE115와 GPC3_ERY27_hCE115의 세포상해 활성을 나타내는 그래프이다. 검은 마름모(◆)는 GPC3_ERY22_rCE115, 검은 삼각(▲)은 GPC3_ERY27_hCE115의 세포상해 활성을 각각 나타낸다.
도 4는 NCI-H446을 표적 세포로 한 경우에 있어서의 최적화 항체의 세포상해 활성을 나타내는 그래프이다.
도 5는 NCI-H446을 표적 세포로 한 경우에 있어서의 최적화 항체의 세포상해 활성을 나타내는 그래프이다.
도 6은 NCI-H446을 표적 세포로 한 경우에 있어서의 최적화 항체의 세포상해 활성을 나타내는 그래프이다.
도 7은 NCI-H446을 표적 세포로 한 경우에 있어서의 최적화 항체의 세포상해 활성을 나타내는 그래프이다.
도 8은 NCI-H446을 표적 세포로 한 경우에 있어서의 최적화 항체의 세포상해 활성을 나타내는 그래프이다.
도 9는 NCI-H446을 표적 세포로 한 경우에 있어서의 최적화 항체의 세포상해 활성을 나타내는 그래프이다.
도 10은 PC-10을 표적 세포로 한 경우에 있어서의 최적화 항체의 in vivo 항종양 효과를 나타내는 도면이다.
도 11은 NCI-H446을 표적 세포로 한 경우에 있어서의 최적화 항체의 in vivo 항종양 효과를 나타내는 도면이다.
도 12는 IgG1, IgG2, IgG3 및 IgG4의 Fc 영역을 구성하는 아미노산 잔기와, kabat의 EU 넘버링(본 명세서에 있어서 EU INDEX라고도 불린다)의 관계를 나타내는 도면이다.
도 13a는 중쇄 가변 영역 서열과 Kabat 등의 각종 넘버링을 나타내는 도면이다.
도 13b는 중쇄 가변 영역 서열과 Kabat 등의 각종 넘버링을 나타내는 도면이다.
도 14는 경쇄 가변 영역 서열과 Kabat 등의 각종 넘버링을 나타내는 도면이다.1 is a schematic diagram of a: ERY22 and b: a schematic diagram of ERY27.
2 is a graph showing cytotoxic activities of GPC3_ERY22_rCE115 and GPC3_ERY27_hCE115 when NCI-H446 is used as a target cell. Black rhombus () indicates the cytotoxic activity of GPC3_ERY22_rCE115, and black triangle () indicates cytotoxic activity of GPC3_ERY27_hCE115.
3 is a graph showing cytotoxic activities of GPC3_ERY22_rCE115 and GPC3_ERY27_hCE115 when PC-10 is used as a target cell. Black rhombus () indicates the cytotoxic activity of GPC3_ERY22_rCE115, and black triangle () indicates cytotoxic activity of GPC3_ERY27_hCE115.
4 is a graph showing the cytotoxic activity of an optimized antibody when NCI-H446 is used as a target cell.
5 is a graph showing the cytotoxic activity of an optimized antibody when NCI-H446 is used as a target cell.
6 is a graph showing the cytotoxic activity of an optimized antibody when NCI-H446 is used as a target cell.
Fig. 7 is a graph showing the cytotoxic activity of an optimized antibody when NCI-H446 is used as a target cell.
Fig. 8 is a graph showing the cytotoxic activity of an optimized antibody when NCI-H446 is used as a target cell.
9 is a graph showing the cytotoxic activity of an optimized antibody when NCI-H446 is used as a target cell.
Fig. 10 is a graph showing an in vivo antitumor effect of an optimized antibody when PC-10 is used as a target cell. Fig.
Fig. 11 is a graph showing an in vivo antitumor effect of an optimized antibody when NCI-H446 is used as a target cell. Fig.
12 is a diagram showing the relationship between the amino acid residues constituting the Fc region of IgG1, IgG2, IgG3 and IgG4 and the EU numbering of kabat (also referred to as EU INDEX in this specification).
13A is a diagram showing various numbering such as a heavy chain variable region sequence and Kabat.
13B is a diagram showing various numbering sequences such as a heavy chain variable region sequence and Kabat.
14 is a diagram showing various numbering such as a light chain variable region sequence and Kabat.
이하의 정의는 본 명세서에 있어서 설명하는 본 발명의 이해를 용이하게 하기 위해서 제공된다.The following definitions are provided to facilitate understanding of the present invention described in this specification.
항체Antibody
본 명세서에 있어서, 항체란, 천연의 것이거나 또는 부분적 또는 완전 합성에 의해 제조된 면역글로불린을 말한다. 항체는 그것이 천연에 존재하는 혈장이나 혈청 등의 천연 자원이나 항체를 산생하는 하이브리도마 세포의 배양 상청으로부터 단리될 수 있고, 또는 유전자 재조합 등의 수법을 이용하는 것에 의해 부분적으로 또는 완전하게 합성될 수 있다. 항체의 예로서는 면역글로불린의 아이소타입 및 그들 아이소타입의 서브클래스를 적합하게 들 수 있다. 인간의 면역글로불린으로서, IgG1, IgG2, IgG3, IgG4, IgA1, IgA2, IgD, IgE, IgM의 9종류의 클래스(아이소타입)가 알려져 있다. 본 발명의 항체에는, 이들 아이소타입 중 IgG1, IgG2, IgG3, IgG4가 포함될 수 있다.As used herein, an antibody refers to an immunoglobulin that is natural or produced by partial or complete synthesis. The antibody may be isolated from the culture supernatant of a natural source such as plasma or serum or hybridizing cells producing the antibody, or may be partially or completely synthesized by using techniques such as gene recombination have. Examples of antibodies are suitably isotypes of immunoglobulins and subclasses of isotypes thereof. As human immunoglobulins, nine classes (isotype) of IgG1, IgG2, IgG3, IgG4, IgA1, IgA2, IgD, IgE and IgM are known. The antibody of the present invention may include IgG1, IgG2, IgG3, and IgG4 among these isotypes.
원하는 결합 활성을 갖는 항체를 제작하는 방법은 당업자에게 공지이다. 이하에, GPI 앵커형 수용체 패밀리에 속하는, 글리피칸 3(이하, GPC3이라고도 한다)(Int J Cancer. (2003) 103 (4), 455-65)에 결합하는 항체(항GPC3 항체)를 제작하는 방법이 예시된다. T 세포 수용체 복합체에 결합하는 항체도 하기의 예시에 준하여 적절히 제작될 수 있다.Methods for making antibodies with the desired binding activity are well known to those skilled in the art. An antibody (anti-GPC3 antibody) which binds to glypicane 3 (hereinafter also referred to as GPC3) (Int J Cancer. (2003) 103 (4), 455-65) belonging to the GPI anchor type receptor family is produced A method is exemplified. Antibodies that bind to the T cell receptor complex can also be suitably produced according to the following examples.
항GPC3 항체는, 공지의 수단을 이용하여 폴리클로날 또는 모노클로날 항체로서 취득될 수 있다. 항GPC3 항체로서는, 포유동물 유래의 모노클로날 항체가 적합하게 제작될 수 있다. 포유동물 유래의 모노클로날 항체에는, 하이브리도마에 의해 산생되는 것, 및 유전자 공학적 수법에 의해 항체 유전자를 포함하는 발현 벡터로 형질 전환된 숙주 세포에 의해 산생되는 것 등이 포함된다.The anti-GPC3 antibody can be obtained as a polyclonal or monoclonal antibody using known means. As the anti-GPC3 antibody, a monoclonal antibody derived from a mammal can be suitably produced. Monoclonal antibodies derived from mammals include those produced by hybridomas and those produced by host cells transformed with an expression vector comprising an antibody gene by genetic engineering techniques.
모노클로날 항체 산생 하이브리도마는, 공지 기술을 사용하는 것에 의해, 예를 들면 이하와 같이 제작될 수 있다. 즉, GPC3 단백질을 감작 항원으로서 사용하고, 통상의 면역 방법에 따라 포유동물이 면역된다. 얻어지는 면역 세포가 통상의 세포 융합법에 의해 공지의 친세포와 융합된다. 다음으로, 통상의 스크리닝법에 의해, 모노클로날인 항체 산생 세포를 스크리닝하는 것에 의해 항GPC3 항체를 산생하는 하이브리도마가 선택될 수 있다.The monoclonal antibody-producing hybridoma can be produced, for example, as follows by using a known technique. That is, the GPC3 protein is used as a sensitizing antigen, and the mammal is immunized according to a conventional immunization method. And the obtained immunocyte is fused with a known progenitor cell by a conventional cell fusion method. Next, a hybridoma that produces an anti-GPC3 antibody can be selected by screening monoclonal antibody-producing cells by a conventional screening method.
구체적으로는, 모노클로날 항체의 제작은 예를 들면 이하에 나타내는 바와 같이 행해진다. 우선, RefSeq 등록번호 NM_001164617.1(서열번호: 1)에 그의 뉴클레오타이드 서열이 개시된 GPC3 유전자를 발현하는 것에 의해, 항체 취득의 감작 항원으로서 사용되는 RefSeq 등록번호 NP_001158089.1(서열번호: 2)로 표시되는 GPC3 단백질이 취득될 수 있다. 즉, GPC3을 코딩하는 유전자 서열을 공지의 발현 벡터에 삽입하는 것에 의해 적당한 숙주 세포가 형질 전환된다. 당해 숙주 세포 중 또는 배양 상청 중으로부터 원하는 인간 GPC3 단백질이 공지의 방법으로 정제된다. 배양 상청 중으로부터 가용형의 GPC3을 취득하기 위해서는, 예를 들면, 서열번호: 2로 표시되는 GPC3 폴리펩타이드 서열 중, GPC3이 세포막 상에 계류되기 때문에 이용되는 GPI 앵커 서열에 상당하는 소수성 영역을 구성하는 564-580 아미노산을 결실한 단백질이 서열번호: 2로 표시되는 GPC3 단백질 대신에 발현된다. 또한, 정제한 천연의 GPC3 단백질도 또한 마찬가지로 감작 항원으로서 사용될 수 있다.Specifically, the production of the monoclonal antibody is carried out, for example, as follows. First, by expressing the GPC3 gene whose nucleotide sequence is disclosed in RefSeq Accession No. NM_001164617.1 (SEQ ID NO: 1), it is represented by RefSeq Accession No. NP_001158089.1 (SEQ ID NO: 2) used as a sensitizing antigen for antibody acquisition Can be obtained. That is, a suitable host cell is transformed by inserting the gene sequence encoding GPC3 into a known expression vector. The desired human GPC3 protein is purified from the host cell or the culture supernatant by a known method. In order to obtain the soluble form of GPC3 from the culture supernatant, for example, a hydrophobic region corresponding to the GPI anchor sequence used because GPC3 is moored on the cell membrane in the GPC3 polypeptide sequence shown in SEQ ID NO: 2 A protein lacking 564-580 amino acids is expressed instead of the GPC3 protein represented by SEQ ID NO: 2. In addition, the purified native GPC3 protein can also be used as a sensitizing antigen.
포유동물에 대한 면역에 사용하는 감작 항원으로서 당해 정제 GPC3 단백질을 사용할 수 있다. GPC3의 부분 펩타이드도 또한 감작 항원으로서 사용할 수 있다. 이때, 해당 부분 펩타이드는 인간 GPC3의 아미노산 서열로부터 화학 합성에 의해서도 취득될 수 있다. 또한, GPC3 유전자의 일부를 발현 벡터에 짜 넣어 발현시키는 것에 의해서도 취득될 수 있다. 나아가서는 단백질 분해 효소를 이용하여 GPC3 단백질을 분해하는 것에 의해서도 취득될 수 있지만, 부분 펩타이드로서 이용하는 GPC3 펩타이드의 영역 및 크기는 특히 특별한 태양에 한정되지 않는다. 바람직한 영역은 서열번호: 2의 아미노산 서열에 있어서 524∼563번째의 아미노산에 상당하는 아미노산 서열로부터 임의의 서열이 선택되고, 보다 바람직하게는 537∼563번째의 아미노산에 상당하는 아미노산 서열로부터 임의의 서열이 선택될 수 있다. 또한, 바람직하게는 서열번호: 2의 아미노산 서열에 있어서 550∼663번째의 아미노산에 상당하는 아미노산 서열이 포함되지 않는 영역의 아미노산 서열로부터 임의의 서열이 선택될 수 있다. 또한 바람직하게는, 서열번호: 2의 아미노산 서열에 있어서 544∼553번째에 상당하는 아미노산 서열로부터 임의의 서열이 선택되고, 보다 바람직하게는 546∼551번째에 상당하는 아미노산 서열로부터 임의의 서열이 선택된다. 감작 항원으로 하는 펩타이드를 구성하는 아미노산의 수는 적어도 5 이상, 예를 들면 6 이상, 또는 7 이상인 것이 바람직하다. 보다 구체적으로는 8∼50, 바람직하게는 10∼30 잔기의 펩타이드가 감작 항원으로서 사용될 수 있다.The purified GPC3 protein may be used as the sensitizing antigen used for immunization against mammals. Partial peptides of GPC3 can also be used as sensitizing antigens. At this time, the partial peptide can also be obtained by chemical synthesis from the amino acid sequence of human GPC3. It can also be obtained by expressing a part of the GPC3 gene in an expression vector. Furthermore, the region and the size of the GPC3 peptide used as the partial peptide can be obtained by decomposing the GPC3 protein using proteolytic enzymes. However, the scope and the size of the GPC3 peptide used as the partial peptide are not particularly limited. A preferable region is any sequence selected from amino acid sequences corresponding to amino acids 524 to 563 in the amino acid sequence of SEQ ID NO: 2, more preferably selected from amino acid sequences corresponding to amino acids 537 to 563, Can be selected. In addition, any sequence may be selected from the amino acid sequence of the region that does not include the amino acid sequence corresponding to the amino acid sequence of the 550th to 663rd amino acids in the amino acid sequence of SEQ ID NO: 2. Preferably, an arbitrary sequence is selected from an amino acid sequence corresponding to the 544th to 553rd amino acid sequence in the amino acid sequence of SEQ ID NO: 2, more preferably an arbitrary sequence is selected from the amino acid sequence corresponding to the 546th to 551st do. The number of amino acids constituting the peptide as a sensitizing antigen is preferably at least 5, for example, 6 or more, or 7 or more. More specifically, a peptide having 8 to 50, preferably 10 to 30, residues may be used as a sensitizing antigen.
또한, GPC3 단백질의 원하는 부분 폴리펩타이드나 펩타이드를 상이한 폴리펩타이드와 융합한 융합 단백질이 감작 항원으로서 이용될 수 있다. 감작 항원으로서 사용되는 융합 단백질을 제조하기 위해서, 예를 들면, 항체의 Fc 단편이나 펩타이드 태그 등이 적합하게 이용될 수 있다. 융합 단백질을 발현하는 벡터는, 원하는 2종류 또는 그 이상의 폴리펩타이드 단편을 코딩하는 유전자가 인프레임으로 융합되고, 당해 융합 유전자가 상기와 같이 발현 벡터에 삽입되는 것에 의해 제작될 수 있다. 융합 단백질의 제작 방법은 Molecular Cloning 2nd ed. (Sambrook, J et al., Molecular Cloning 2nd ed., 9.47-9.58 (1989) Cold Spring Harbor Lab. press)에 기재되어 있다. 감작 항원으로서 이용되는 GPC3의 취득 방법 및 그것을 이용한 면역 방법은, WO2003/000883, WO2004/022754, WO2006/006693 등에도 구체적으로 기재되어 있다.In addition, a fusion protein obtained by fusing a desired partial polypeptide or peptide of the GPC3 protein with a different polypeptide may be used as a sensitizing antigen. In order to prepare a fusion protein to be used as a sensitizing antigen, for example, an Fc fragment of an antibody or a peptide tag can be suitably used. A vector expressing a fusion protein can be produced by inserting a gene encoding two or more desired polypeptide fragments into an in-frame and inserting the fusion gene into the expression vector as described above. Methods for preparing fusion proteins are described in Molecular Cloning 2nd ed. (Sambrook, J et al., Molecular Cloning 2nd ed., 9.47-9.58 (1989) Cold Spring Harbor Lab. Press). A method of obtaining GPC3 used as a sensitizing antigen and an immunological method using the same are also specifically described in WO2003 / 000883, WO2004 / 022754, WO2006 / 006693, and the like.
해당 감작 항원으로 면역되는 포유동물로서는, 특정 동물에 한정되는 것은 아니지만, 세포 융합에 사용하는 친세포와의 적합성을 고려하여 선택하는 것이 바람직하다. 일반적으로는 설치류의 동물, 예를 들면 마우스, 래트, 햄스터, 또는 토끼, 원숭이 등이 적합하게 사용된다.The mammal immunized with the sensitizing antigen is not limited to a specific animal, but is preferably selected in consideration of compatibility with a progenitor cell used for cell fusion. In general, animals of rodents, such as mice, rats, hamsters, rabbits, monkeys, etc., are suitably used.
공지의 방법에 따라 상기의 동물이 감작 항원에 의해 면역된다. 예를 들면, 일반적인 방법으로서, 감작 항원이 포유동물의 복강내 또는 피하에 주사에 의해 투여되는 것에 의해 면역이 실시된다. 구체적으로는, PBS(Phosphate-Buffered Saline)나 생리 식염수 등으로 적당한 희석 배율로 희석된 감작 항원이, 희망에 따라 통상의 아쥬반트, 예를 들면 프로인트 완전 아쥬반트와 혼합되고, 유화된 후에, 해당 감작 항원이 포유동물에 4 내지 21일마다 수회 투여된다. 또한, 감작 항원의 면역 시에는 적당한 담체가 사용될 수 있다. 특히 분자량이 작은 부분 펩타이드가 감작 항원으로서 이용되는 경우에는, 알부민, 키홀 림펫 헤모사이아닌 등의 담체 단백질과 결합한 해당 감작 항원 펩타이드를 면역하는 것이 바람직한 경우도 있다.The animal is immunized with a sensitizing antigen according to a known method. For example, as a general method, immunization is carried out by administering the sensitizing antigen by intraperitoneal injection or subcutaneously in a mammal. Specifically, a sensitizing antigen diluted with an appropriate dilution ratio with PBS (phosphate-buffered saline), physiological saline or the like is mixed with an ordinary adjuvant such as Freund's complete adjuvant, if desired, The sensitizing antigen is administered to the mammal several times every 4 to 21 days. In addition, when immunizing a sensitizing antigen, a suitable carrier may be used. Particularly, when a partial peptide having a small molecular weight is used as a sensitizing antigen, it may be preferable to immunize the sensitizing antigen peptide bound to a carrier protein such as albumin, keyhole limpet hemocyanin or the like.
또한, 원하는 항체를 산생하는 하이브리도마는, DNA 면역을 사용하여, 이하와 같이 해도 제작될 수 있다. DNA 면역이란, 면역 동물 중에서 항원 단백질을 코딩하는 유전자가 발현될 수 있는 태양으로 구축된 벡터 DNA가 투여된 당해 면역 동물 중에서, 감작 항원이 당해 면역 동물의 생체 내에서 발현되는 것에 의해, 면역 자극이 주어지는 면역 방법이다. 단백질 항원이 면역 동물에 투여되는 일반적인 면역 방법과 비교하여, DNA 면역에는, 다음과 같은 우위성이 기대된다.Hybridomas that produce the desired antibody can also be produced using DNA immunization as described below. DNA immunization refers to the expression of the sensitizing antigen in the living body of the immunized animal in which the vector DNA constructed as a mode in which the gene encoding the antigen protein is expressed in the immunized animal is administered, It is an immunological method given. Compared to the general immunization method in which protein antigens are administered to immunized animals, the following advantages are expected for DNA immunization.
-GPC3과 같은 막 단백질의 구조를 유지하고 면역 자극이 주어질 수 있다-The structure of membrane proteins such as GPC3 can be maintained and immunostimulation given
-면역 항원을 정제할 필요가 없다- There is no need to purify the immune antigen
DNA 면역에 의해 본 발명의 모노클로날 항체를 얻기 위해서, 우선, GPC3 단백질을 발현하는 DNA가 면역 동물에 투여된다. GPC3을 코딩하는 DNA는, PCR 등의 공지의 방법에 의해 합성될 수 있다. 얻어진 DNA가 적당한 발현 벡터에 삽입되어, 면역 동물에 투여된다. 발현 벡터로서는, 예를 들어 pcDNA3.1 등의 시판 중인 발현 벡터가 적합하게 이용될 수 있다. 벡터를 생체에 투여하는 방법으로서, 일반적으로 이용되고 있는 방법이 이용될 수 있다. 예를 들어, 발현 벡터가 흡착된 금 입자가 gene gun으로 면역 동물 개체의 세포 내에 도입되는 것에 의해 DNA 면역이 행해진다. 또, GPC3을 인식하는 항체의 제작은 국제공개 WO2003/104453에 기재된 방법을 이용해도 제작될 수 있다.In order to obtain the monoclonal antibody of the present invention by DNA immunization, DNA expressing the GPC3 protein is first administered to an immunized animal. The DNA encoding GPC3 can be synthesized by a known method such as PCR. The obtained DNA is inserted into an appropriate expression vector and administered to an immunized animal. As the expression vector, for example, a commercially available expression vector such as pcDNA3.1 can be suitably used. As a method of administering the vector to a living body, a commonly used method can be used. For example, DNA immunization is carried out by introducing an expression vector-adsorbed gold particle into a cell of an immunized animal as a gene gun. In addition, the production of an antibody recognizing GPC3 can also be produced by the method described in WO2003 / 104453.
이와 같이 포유동물이 면역되고, 혈청 중에 있어서의 GPC3에 결합하는 항체 역가의 상승이 확인된 후에, 포유동물로부터 면역 세포가 채취되어, 세포 융합에 제공된다. 바람직한 면역 세포로서는, 특히 비(脾)세포가 사용될 수 있다.After the mammal is immunized and an increase in the antibody titer binding to GPC3 in the serum is confirmed, the immune cells are collected from the mammal and provided for cell fusion. As preferable immune cells, non-spleen cells can be used.
상기 면역 세포와 융합되는 세포로서, 포유동물의 골수종 세포가 이용된다. 골수종 세포는, 스크리닝을 위한 적당한 선택 마커를 구비하고 있는 것이 바람직하다. 선택 마커란, 특정 배양 조건하에서 생존할 수 있는 (또는 할 수 없는) 형질을 가리킨다. 선택 마커에는, 하이포잔틴-구아닌-포스포리보실트랜스페라아제 결손(이하 HGPRT 결손으로 생략한다) 또는 티미딘키나아제 결손(이하 TK 결손으로 생략한다) 등이 공지이다. HGPRT나 TK의 결손을 갖는 세포는, 하이포잔틴-아미노프테린-티미딘 감수성(이하 HAT 감수성으로 생략한다)을 갖는다. HAT 감수성의 세포는 HAT 선택 배지 중에서 DNA 합성을 행할 수 없어 사멸하지만, 정상적인 세포와 융합하면 정상 세포의 샐비지 회로를 이용하여 DNA의 합성을 계속할 수 있기 때문에 HAT 선택 배지 중에서도 증식하게 된다.As a cell to be fused with the above immunocyte, a myeloma cell of a mammal is used. The myeloma cells are preferably provided with suitable selection markers for screening. A selectable marker refers to a trait that can (or can not) survive under certain culture conditions. The selectable markers include known hypoxanthine-guanine-phosphoribosyltransferase deficiency (hereinafter referred to as HGPRT deletion) or thymidine kinase deficiency (hereinafter referred to as TK deletion). Cells with deficiency of HGPRT or TK have hypoxanthine-aminopterin-thymidine susceptibility (hereinafter abbreviated as HAT sensitivity). HAT-susceptible cells die because they can not synthesize DNA in the HAT selection medium. However, if they are fused with normal cells, the DNA synthesis can be continued using the normal cell salvage circuit.
HGPRT 결손이나 TK 결손의 세포는, 각각 6 싸이오구아닌, 8 아자구아닌(이하 8AG로 생략한다), 또는 5' 브로모데옥시우리딘을 포함하는 배지에서 선택될 수 있다. 이들 피리미딘 아날로그를 DNA 중에 받아들이는 정상적인 세포는 사멸한다. 한편, 이들 피리미딘 아날로그를 받아들일 수 없는 이들 효소를 결손한 세포는, 선택 배지 중에서 생존할 수 있다. 이 밖에 G418 내성이라고 불리는 선택 마커는, 네오마이신 내성 유전자에 의해 2-데옥시스트렙타민계 항생 물질(겐타마이신 유사체)에 대한 내성을 부여한다. 세포 융합에 적합한 여러 가지의 골수종 세포가 공지이다.Cells of HGPRT deficient or TK deficient can be selected from a medium comprising 6 thioguanine, 8 azaguanine (hereinafter abbreviated as 8AG), or 5 'bromodeoxyuridine, respectively. Normal cells that accept these pyrimidine analogs in DNA die. On the other hand, cells deficient in these enzymes that can not accept these pyrimidine analogues can survive in the selective medium. In addition, selectable markers called G418 resistance confer resistance to 2-deoxyestremin antibiotics (gentamicin analogs) by the neomycin resistance gene. Several myeloma cells suitable for cell fusion are known.
이와 같은 골수종 세포로서, 예를 들면, P3 (P3x63Ag8.653)(J. Immunol. (1979) 123 (4), 1548-1550), P3x63Ag8U.1 (Current Topics in Microbiology and Immunology (1978) 81, 1-7), NS-1 (C. Eur. J. Immunol. (1976) 6 (7), 511-519), MPC-11 (Cell (1976) 8 (3), 405-415), SP2/0 (Nature (1978) 276 (5685), 269-270), FO (J. Immunol. Methods (1980) 35 (1-2), 1-21), S194/5.XX0.BU.1 (J. Exp. Med. (1978) 148 (1), 313-323), R210 (Nature(1979) 277 (5692), 131-133) 등이 적합하게 사용될 수 있다.As such myeloma cells, for example, P3 (P3x63Ag8.653) (J. Immunol. (1979) 123 (4), 1548-1550), P3x63Ag8U.1 (Current Topics in Microbiology and Immunology -7), NS-1 (C. Eur. J. Immunol. (1976) 6 (7), 511-519), MPC-11 (Cell (1976) 8 (3), 405-415) (1978) 276 (5685), 269-270), FO (J. Immunol. Methods (1980) 35 (1-2), 1-21), S194 / 5.XX0.BU.1 (1978) 148 (1), 313-323), R210 (Nature (1979) 277 (5692), 131-133).
기본적으로는 공지의 방법, 예를 들어, 쾰러와 밀스테인 등의 방법(Methods Enzymol. (1981) 73, 3-46) 등에 준하여, 상기 면역 세포와 골수종 세포의 세포 융합이 행해진다.Basically, cell fusion of the above immunocyte and myeloma cells is performed according to a known method, for example, a method such as Kohler and Milstein (Methods Enzymol. (1981) 73, 3-46)
보다 구체적으로는, 예를 들면 세포 융합 촉진제의 존재하에서 통상의 영양 배양액 중에서, 상기 세포 융합이 실시될 수 있다. 융합 촉진제로서는, 예를 들면 폴리에틸렌글리콜(PEG), 센다이 바이러스(HVJ) 등이 사용되고, 추가로 융합 효율을 높이기 위해서 희망에 따라 다이메틸설폭사이드 등의 보조제가 첨가되어 사용된다.More specifically, the cell fusion may be carried out in a conventional nutrient culture solution in the presence of, for example, a cell fusion promoter. As the fusion promoter, for example, polyethylene glycol (PEG), Sendai virus (HVJ) and the like are used, and adjuvants such as dimethyl sulfoxide are added as needed to increase the fusion efficiency.
면역 세포와 골수종 세포의 사용 비율은 임의로 설정될 수 있다. 예를 들면, 골수종 세포에 대해서 면역 세포를 1 내지 10배로 하는 것이 바람직하다. 상기 세포 융합에 이용하는 배양액으로서는, 예를 들면, 상기 골수종 세포주의 증식에 적합한 RPMI1640 배양액, MEM 배양액, 기타, 이 종류의 세포 배양에 이용되는 통상의 배양액이 사용되고, 추가로 소태아 혈청(FCS) 등의 혈청 보액이 적합하게 첨가될 수 있다.The use ratio of immune cells and myeloma cells can be set arbitrarily. For example, the number of immune cells is preferably 1 to 10 times that of myeloma cells. As the culture medium used for the cell fusion, for example, an RPMI1640 culture medium, a MEM culture medium suitable for the proliferation of the above myeloma cell lines, and other culture mediums used for cell culture of this kind are used, and further, fetal bovine serum (FCS) Can be suitably added.
세포 융합은, 상기 면역 세포와 골수종 세포의 소정량을 상기 배양액 중에서 잘 혼합하여, 미리 37℃ 정도로 가온된 PEG 용액(예를 들면 평균 분자량 1000 내지 6000 정도)이 통상 30 내지 60%(w/v)의 농도로 첨가된다. 혼합액이 완만하게 혼합되는 것에 의해 원하는 융합 세포(하이브리도마)가 형성된다. 이어서, 상기에 예로 든 적당한 배양액이 축차적으로 첨가되고, 원심하여 상청을 제거하는 조작을 반복하는 것에 의해 하이브리도마의 생육에 바람직하지 않은 세포 융합제 등이 제거될 수 있다.The cell fusion is carried out by mixing a predetermined amount of the above immune cells and myeloma cells in the above culture medium to prepare a PEG solution (for example, an average molecular weight of about 1000 to 6000) preliminarily heated to about 37 ° C in an amount of usually 30 to 60% ). ≪ / RTI > The desired fusion cell (hybridoma) is formed by gently mixing the mixed solution. Subsequently, an appropriate culture solution as described above is added in a cyclic manner, centrifugation is performed and the operation of removing the supernatant is repeated, whereby undesirable cell fusion agents and the like can be removed in the growth of the hybridoma.
이와 같이 해서 얻어진 하이브리도마는, 통상의 선택 배양액, 예를 들면 HAT 배양액(하이포잔틴, 아미노프테린 및 티미딘을 포함하는 배양액)으로 배양하는 것에 의해 선택될 수 있다. 원하는 하이브리도마 이외의 세포(비융합 세포)가 사멸하는 데 충분한 시간(통상, 이러한 충분한 시간은 수일 내지 수 주간이다) 상기 HAT 배양액을 이용한 배양이 계속될 수 있다. 이어서, 통상의 한계 희석법에 의해, 원하는 항체를 산생하는 하이브리도마의 스크리닝 및 단일 클로닝이 실시된다.The hybridomas thus obtained can be selected by culturing in a usual selective culture medium, for example, HAT culture medium (culture medium containing hypoxanthine, aminopterin and thymidine). The incubation with the HAT culture medium can be continued for a sufficient time (normally, such a sufficient time is several days to several weeks) that cells other than the desired hybridoma (non-fused cells) are killed. Screening and single cloning of the hybridoma producing the desired antibody is then carried out by conventional limiting dilution.
이와 같이 해서 얻어진 하이브리도마는, 세포 융합에 이용된 골수종이 갖는 선택 마커에 따른 선택 배양액을 이용하는 것에 의해 선택될 수 있다. 예를 들면 HGPRT나 TK의 결손을 갖는 세포는, HAT 배양액(하이포잔틴, 아미노프테린 및 티미딘을 포함하는 배양액)으로 배양하는 것에 의해 선택될 수 있다. 즉, HAT 감수성의 골수종 세포를 세포 융합에 이용한 경우, HAT 배양액 중에서, 정상 세포와의 세포 융합에 성공한 세포가 선택적으로 증식될 수 있다. 원하는 하이브리도마 이외의 세포(비융합 세포)가 사멸하는 데 충분한 시간, 상기 HAT 배양액을 이용한 배양이 계속된다. 구체적으로는, 일반적으로 수일 내지 수 주간의 배양에 의해, 원하는 하이브리도마가 선택될 수 있다. 이어서, 통상의 한계 희석법에 의해, 원하는 항체를 산생하는 하이브리도마의 스크리닝 및 단일 클로닝이 실시될 수 있다.The hybridomas thus obtained can be selected by using a selective culture medium according to a selection marker of a myeloma used for cell fusion. For example, cells having a deficiency of HGPRT or TK can be selected by culturing with a HAT culture medium (culture medium containing hypoxanthine, aminopterin, and thymidine). That is, when HAT-susceptible myeloma cells are used for cell fusion, cells successfully fused with normal cells in the HAT culture can be selectively proliferated. The culture using the HAT culture medium is continued for a sufficient time to kill cells other than the desired hybridoma (unfused cells). Specifically, a desired hybridoma can be selected by culturing generally for several days to several weeks. Screening and single cloning of the hybridoma producing the desired antibody can then be carried out by conventional limiting dilution methods.
원하는 항체의 스크리닝 및 단일 클로닝이, 공지의 항원 항체 반응에 기초하는 스크리닝 방법에 의해 적합하게 실시될 수 있다. 예를 들면, GPC3에 결합하는 모노클로날 항체는, 세포 표면에 발현된 GPC3에 결합할 수 있다. 이와 같은 모노클로날 항체는, 예를 들어, FACS(fluorescence activated cell sorting)에 의해 스크리닝될 수 있다. FACS는, 형광 항체와 접촉시킨 세포를 레이저광으로 해석하여, 개개의 세포가 발하는 형광을 측정하는 것에 의해 세포 표면에 대한 항체의 결합을 측정하는 것을 가능하게 하는 시스템이다.Screening and single cloning of the desired antibody can be suitably carried out by a screening method based on known antigen-antibody reaction. For example, a monoclonal antibody that binds to GPC3 can bind to GPC3 expressed on the cell surface. Such a monoclonal antibody can be screened by, for example, fluorescence activated cell sorting (FACS). FACS is a system that makes it possible to measure the binding of an antibody to a cell surface by analyzing the cells in contact with the fluorescent antibody by laser light and measuring the fluorescence emitted by the individual cells.
FACS에 의해 본 발명의 모노클로날 항체를 산생하는 하이브리도마를 스크리닝하기 위해서는, 우선 GPC3을 발현하는 세포를 조제한다. 스크리닝을 위한 바람직한 세포는, GPC3을 강제 발현시킨 포유동물 세포이다. 숙주 세포로서 사용한 형질 전환되어 있지 않은 포유동물 세포를 대조로서 이용하는 것에 의해, 세포 표면의 GPC3에 대한 항체의 결합 활성이 선택적으로 검출될 수 있다. 즉, 숙주 세포에 결합하지 않고, GPC3 강제 발현 세포에 결합하는 항체를 산생하는 하이브리도마를 선택하는 것에 의해, GPC3 모노클로날 항체를 산생하는 하이브리도마가 취득될 수 있다.To screen a hybridoma producing the monoclonal antibody of the present invention by FACS, cells expressing GPC3 are first prepared. A preferred cell for screening is a mammalian cell forcibly expressing GPC3. By using untransformed mammalian cells used as a host cell as a control, the binding activity of antibody to GPC3 on the cell surface can be selectively detected. That is, a hybridoma that produces a GPC3 monoclonal antibody can be obtained by selecting a hybridoma that does not bind to the host cell but produces an antibody that binds to the GPC3 expressing cell.
또는 고정화한 GPC3 발현 세포에 대한 항체의 결합 활성이 ELISA의 원리에 기초하여 평가될 수 있다. 예를 들어, ELISA 플레이트의 웰에 GPC3 발현 세포가 고정화된다. 하이브리도마의 배양 상청을 웰 내의 고정화 세포에 접촉시켜, 고정화 세포에 결합하는 항체가 검출된다. 모노클로날 항체가 마우스 유래인 경우, 세포에 결합한 항체는, 항마우스 이뮤노글로불린 항체에 의해 검출될 수 있다. 이들의 스크리닝에 의해 선택된, 항원에 대한 결합능을 갖는 원하는 항체를 산생하는 하이브리도마는, 한계 희석법 등에 의해 클로닝될 수 있다.Or the binding activity of the antibody to immobilized GPC3 expressing cells can be evaluated based on the principle of ELISA. For example, GPC3 expressing cells are immobilized in wells of ELISA plates. The culture supernatant of the hybridoma is contacted with the immobilized cells in the well to detect antibodies binding to the immobilized cells. When the monoclonal antibody is derived from a mouse, the antibody bound to the cell can be detected by an anti-mouse immunoglobulin antibody. Hybridomas that produce the desired antibody having binding ability to an antigen, selected by screening thereof, can be cloned by limiting dilution or the like.
이와 같이 해서 제작되는 모노클로날 항체를 산생하는 하이브리도마는 통상의 배양액 중에서 계대 배양될 수 있다. 또한, 해당 하이브리도마는 액체 질소 중에서 장기에 걸쳐 보존될 수 있다.The hybridoma producing the monoclonal antibody thus produced can be subcultured in a conventional culture. In addition, the hybridomas can be preserved in liquid nitrogen over a long period of time.
당해 하이브리도마를 통상의 방법에 따라 배양하고, 그 배양 상청으로부터 원하는 모노클로날 항체가 취득될 수 있다. 또는 하이브리도마를 이것과 적합성이 있는 포유동물에 투여하여 증식시켜, 그의 복수로부터 모노클로날 항체가 취득될 수 있다. 전자의 방법은 고순도의 항체를 얻는 데 적합한 것이다.The hybridoma can be cultured according to a conventional method, and the desired monoclonal antibody can be obtained from the culture supernatant. Alternatively, the hybridoma may be administered to a mammal that is compatible with it and proliferated, so that the monoclonal antibody can be obtained from the plurality. The former method is suitable for obtaining high purity antibodies.
당해 하이브리도마 등의 항체 산생 세포로부터 클로닝되는 항체 유전자에 의해 코딩되는 항체도 적합하게 이용될 수 있다. 클로닝한 항체 유전자를 적당한 벡터에 짜 넣어 숙주에 도입하는 것에 의해, 당해 유전자에 의해 코딩되는 항체가 발현된다. 항체 유전자의 단리와, 벡터로의 도입, 그리고 숙주 세포의 형질 전환을 위한 방법은 예를 들면, Vandamme 등에 의해 이미 확립되어 있다(Eur.J. Biochem. (1990) 192 (3), 767-775). 하기에 기술하는 바와 같이 재조합 항체의 제조 방법도 또한 공지이다.Antibodies that are encoded by an antibody gene cloned from antibody-producing cells such as the hybridoma can also be suitably used. The cloned antibody gene is incorporated into an appropriate vector and introduced into a host, whereby an antibody encoded by the gene is expressed. Methods for isolation, introduction into vectors, and transformation of host cells have already been established, for example, by Vandamme et al. (Eur. J. Biochem. (1990) 192 (3), 767-775 ). Methods for producing recombinant antibodies as described below are also known.
예를 들어, 항GPC3 항체를 산생하는 하이브리도마 세포로부터, 항GPC3 항체의 가변 영역(V 영역)을 코딩하는 cDNA가 취득된다. 그를 위해, 통상, 우선 하이브리도마로부터 전체 RNA가 추출된다. 세포로부터 mRNA를 추출하기 위한 방법으로서, 예를 들어 다음과 같은 방법을 이용할 수 있다.For example, cDNA encoding a variable region (V region) of an anti-GPC3 antibody is obtained from hybridoma cells that produce an anti-GPC3 antibody. For that purpose, usually first, total RNA is extracted from the hybridoma. As a method for extracting mRNA from a cell, for example, the following method can be used.
-구아니딘 초원심법(Biochemistry (1979) 18 (24), 5294-5299)- Guanidine grassland method (Biochemistry (1979) 18 (24), 5294-5299)
-AGPC법(Anal. Biochem. (1987) 162 (1), 156-159)-AGPC method (Anal. Biochem. (1987) 162 (1), 156-159)
추출된 mRNA는, mRNA Purification Kit(GE헬스케어바이오사이언스제) 등을 사용하여 정제될 수 있다. 또는, QuickPrep mRNA Purification Kit(GE헬스케어바이오사이언스제) 등과 같이, 세포로부터 직접 전체 mRNA를 추출하기 위한 키트도 시판되고 있다. 이와 같은 키트를 이용하여, 하이브리도마로부터 mRNA가 취득될 수 있다. 얻어진 mRNA로부터 역전사 효소를 이용하여 항체 V 영역을 코딩하는 cDNA가 합성될 수 있다. cDNA는, AMV Reverse Transcriptase First-strand cDNA Synthesis Kit(세이카가쿠공업사제) 등에 의해 합성될 수 있다. 또한, cDNA의 합성 및 증폭을 위해서, SMART RACE cDNA 증폭 키트(Clontech제) 및 PCR을 이용한 5'-RACE법(Proc. Natl. Acad. Sci. USA (1988) 85 (23), 8998-9002, Nucleic Acids Res. (1989) 17 (8), 2919-2932)이 적절히 이용될 수 있다. 또 이러한 cDNA의 합성의 과정에서 cDNA의 양 말단에 후술하는 적절한 제한 효소 사이트가 도입될 수 있다.The extracted mRNA can be purified using an mRNA Purification Kit (manufactured by GE Healthcare Bioscience) or the like. Alternatively, a kit for extracting whole mRNA directly from cells such as the QuickPrep mRNA Purification Kit (GE Healthcare Bioscience) is also commercially available. By using such a kit, mRNA can be obtained from the hybridoma. From the obtained mRNA, cDNA coding for the antibody V region can be synthesized using a reverse transcriptase. The cDNA can be synthesized by AMV Reverse Transcriptase First-strand cDNA Synthesis Kit (manufactured by Seikagaku Kogyo Co., Ltd.). In addition, for the synthesis and amplification of cDNA, a 5'-RACE method (Proc. Natl. Acad. Sci. USA (1988) 85 (23), 8998-9002) using SMART RACE cDNA amplification kit (Clontech) Nucleic Acids Res. (1989) 17 (8), 2919-2932) can be suitably used. In addition, in the course of the synthesis of such cDNA, appropriate restriction enzyme sites described later can be introduced at both ends of the cDNA.
얻어진 PCR 산물로부터 목적으로 하는 cDNA 단편이 정제되고, 이어서 벡터 DNA와 연결된다. 이와 같이 재조합 벡터가 제작되고, 대장균 등에 도입되어 콜로니가 선택된 후에, 해당 콜로니를 형성한 대장균으로부터 원하는 재조합 벡터가 조제될 수 있다. 그리고, 해당 재조합 벡터가 목적으로 하는 cDNA의 염기 서열을 갖고 있는지 여부에 대하여, 공지의 방법, 예를 들면, 다이데옥시뉴클레오타이드 체인 터미네이션법 등에 의해 확인된다.The desired cDNA fragment is purified from the obtained PCR product and then ligated to the vector DNA. After a recombinant vector is prepared and introduced into E. coli or the like to select a colony, a desired recombinant vector can be prepared from the E. coli in which the colony is formed. Whether or not the recombinant vector has the nucleotide sequence of the desired cDNA is confirmed by a known method, for example, a termination method of a dideoxynucleotide.
가변 영역을 코딩하는 유전자를 취득하기 위해서는, 가변 영역 유전자 증폭용의 프라이머를 사용한 5'-RACE법을 이용하는 것이 간편하다. 우선 하이브리도마 세포로부터 추출된 RNA를 주형으로 해서 cDNA가 합성되어, 5'-RACE cDNA 라이브러리가 얻어진다. 5'-RACE cDNA 라이브러리의 합성에는 SMART RACE cDNA 증폭 키트 등 시판 중인 키트가 적절히 이용된다.In order to obtain a gene encoding a variable region, it is convenient to use the 5'-RACE method using a primer for amplifying a variable region gene. First, cDNA is synthesized using RNA extracted from hybridoma cells as a template to obtain a 5'-RACE cDNA library. A commercially available kit such as a SMART RACE cDNA amplification kit is suitably used for the synthesis of the 5'-RACE cDNA library.
얻어진 5'-RACE cDNA 라이브러리를 주형으로 해서, PCR법에 의해 항체 유전자가 증폭된다. 공지의 항체 유전자 서열을 토대로 마우스 항체 유전자 증폭용의 프라이머가 디자인될 수 있다. 이들 프라이머는, 이뮤노글로불린의 서브클래스마다 상이한 염기 서열이다. 따라서, 서브클래스는 미리 Iso Strip 마우스 모노클로날 항체 아이소타이핑 키트(로슈·다이어그노스틱스) 등의 시판 키트를 이용하여 결정해 두는 것이 바람직하다.Using the obtained 5'-RACE cDNA library as a template, the antibody gene is amplified by PCR. A primer for amplifying a mouse antibody gene can be designed based on a known antibody gene sequence. These primers are different base sequences for each subclass of immunoglobulin. Therefore, it is preferable to determine the subclass using a commercially available kit such as Iso Strip mouse monoclonal antibody isotyping kit (Roche Diagnostics) in advance.
구체적으로는, 예를 들어 마우스 IgG를 코딩하는 유전자의 취득을 목적으로 할 때에는, 중쇄로서 γ1, γ2a, γ2b, γ3, 경쇄로서 κ쇄와 λ쇄를 코딩하는 유전자의 증폭이 가능한 프라이머가 이용될 수 있다. IgG의 가변 영역 유전자를 증폭하기 위해서는, 일반적으로 3'측의 프라이머에는 가변 영역에 가까운 정상 영역에 상당하는 부분에 어닐링하는 프라이머가 이용된다. 한편, 5'측의 프라이머에는, 5' RACE cDNA 라이브러리 제작 키트에 부속되는 프라이머가 이용된다.Specifically, for example, when a purpose of obtaining a gene encoding mouse IgG is to be obtained, a primer capable of amplifying γ1, γ2a, γ2b, γ3 as a heavy chain and a gene encoding κ chain and λ chain as a light chain is used . In order to amplify the variable region gene of IgG, a primer that anneals to the portion corresponding to the normal region near the variable region is generally used as the primer on the 3 'side. On the other hand, as the primer on the 5 'side, a primer attached to the 5' RACE cDNA library production kit is used.
이렇게 해서 증폭된 PCR 산물을 이용하여, 중쇄와 경쇄의 조합으로 이루어지는 이뮤노글로불린이 재구성될 수 있다. 재구성된 이뮤노글로불린의 GPC3에 대한 결합 활성을 지표로 해서, 원하는 항체가 스크리닝될 수 있다. 예를 들어 GPC3에 대한 항체의 취득을 목적으로 할 때, 항체의 GPC3에 대한 결합은 특이적인 것이 더 바람직하다. GPC3에 결합하는 항체는, 예를 들어 다음과 같이 해서 스크리닝될 수 있다;Using the amplified PCR product, the immunoglobulin composed of a combination of a heavy chain and a light chain can be reconstituted. With the binding activity of the reconstituted immunoglobulin to GPC3 as an indicator, the desired antibody can be screened. For example, when it is intended to obtain an antibody against GPC3, the binding of the antibody to GPC3 is more specific. Antibodies that bind to GPC3 can be screened, for example, as follows;
(1) 하이브리도마로부터 얻어진 cDNA에 의해 코딩되는 V 영역을 포함하는 항체를 GPC3 발현 세포에 접촉시키는 공정,(1) a step of bringing an antibody comprising a V region, which is encoded by cDNA obtained from a hybridoma, into contact with GPC3 expressing cells,
(2) GPC3 발현 세포와 항체의 결합을 검출하는 공정, 및(2) a step of detecting binding of GPC3 expressing cells to an antibody, and
(3) GPC3 발현 세포에 결합하는 항체를 선택하는 공정.(3) a step of selecting an antibody binding to GPC3 expressing cells.
항체와 GPC3 발현 세포의 결합을 검출하는 방법은 공지이다. 구체적으로는, 앞서 기술한 FACS 등의 수법에 의해, 항체와 GPC3 발현 세포의 결합이 검출될 수 있다. 항체의 결합 활성을 평가하기 위해서 GPC3 발현 세포의 고정 표본이 적절히 이용될 수 있다.Methods for detecting the binding of an antibody to GPC3 expressing cells are known. Specifically, the binding between the antibody and the GPC3-expressing cell can be detected by the above-described FACS or other technique. To evaluate the binding activity of the antibody, a fixed sample of GPC3 expressing cells can be suitably used.
결합 활성을 지표로 하는 항체의 스크리닝 방법으로서, 파지 벡터를 이용한 패닝법도 적합하게 이용된다. 폴리클로날인 항체 발현 세포군으로부터 항체 유전자를 중쇄와 경쇄의 서브클래스의 라이브러리로서 취득한 경우에는, 파지 벡터를 이용한 스크리닝 방법이 유리하다. 중쇄와 경쇄의 가변 영역을 코딩하는 유전자는, 적당한 링커 서열로 연결하는 것에 의해 싱글 체인 Fv(scFv)를 형성할 수 있다. scFv를 코딩하는 유전자를 파지 벡터에 삽입하는 것에 의해, scFv를 표면에 발현하는 파지가 취득될 수 있다. 이 파지와 원하는 항원의 접촉 후에, 항원에 결합한 파지를 회수하는 것에 의해, 목적하는 결합 활성을 갖는 scFv를 코딩하는 DNA가 회수될 수 있다. 이 조작을 필요에 따라서 반복하는 것에 의해, 원하는 결합 활성을 갖는 scFv가 농축될 수 있다.As a screening method of an antibody whose binding activity is used as an index, a panning method using a phage vector is also suitably used. When an antibody gene is obtained from a polyclonal antibody expressing cell group as a library of sub-classes of a heavy chain and a light chain, a screening method using a phage vector is advantageous. The genes encoding the variable regions of the heavy chain and the light chain can form a single chain Fv (scFv) by linking with a suitable linker sequence. By inserting the gene encoding the scFv into the phage vector, a phage expressing the scFv on the surface can be obtained. After contacting the phage with the desired antigen, the DNA encoding the scFv having the desired binding activity can be recovered by recovering the phage bound to the antigen. By repeating this operation as necessary, the scFv having the desired binding activity can be concentrated.
목적으로 하는 항GPC3 항체의 V 영역을 코딩하는 cDNA가 얻어진 후에, 당해 cDNA의 양 말단에 삽입한 제한 효소 사이트를 인식하는 제한 효소에 의해 해당 cDNA가 소화된다. 바람직한 제한 효소는, 항체 유전자를 구성하는 염기 서열에 출현하는 빈도가 낮은 염기 서열을 인식하여 소화한다. 또 1카피의 소화 단편을 벡터에 바른 방향으로 삽입하기 위해서는, 부착 말단을 부여하는 제한 효소의 삽입이 바람직하다. 상기와 같이 소화된 항GPC3 항체의 V 영역을 코딩하는 cDNA를 적당한 발현 벡터에 삽입하는 것에 의해, 항체 발현 벡터가 취득될 수 있다. 이때, 항체 정상 영역(C 영역)을 코딩하는 유전자와, 상기 V 영역을 코딩하는 유전자가 인프레임으로 융합되면, 키메라 항체가 취득된다. 여기에서, 키메라 항체란, 정상 영역과 가변 영역의 유래가 상이한 것을 말한다. 따라서, 마우스-인간 등의 이종 키메라 항체에 더하여, 인간-인간 동종 키메라 항체도, 본 발명에 있어서의 키메라 항체에 포함된다. 미리 정상 영역을 갖는 발현 벡터에 상기 V 영역 유전자를 삽입하는 것에 의해, 키메라 항체 발현 벡터가 구축될 수 있다. 구체적으로는, 예를 들어, 원하는 항체 정상 영역(C 영역)을 코딩하는 DNA를 유지한 발현 벡터의 5'측에 상기 V 영역 유전자를 소화하는 제한 효소의 제한 효소 인식 서열이 적절히 배치될 수 있다. 동일한 조합의 제한 효소로 소화된 양자가 인프레임으로 융합되는 것에 의해, 키메라 항체 발현 벡터가 구축된다.After the cDNA encoding the V region of the desired anti-GPC3 antibody is obtained, the corresponding cDNA is digested by a restriction enzyme that recognizes the restriction enzyme site inserted at both ends of the cDNA. Preferred restriction enzymes recognize and digest a nucleotide sequence having a low frequency of occurrence in the nucleotide sequence constituting the antibody gene. In addition, in order to insert one copy of the digested fragment in the correct direction to the vector, insertion of a restriction enzyme that imparts an attached end is preferable. By inserting the cDNA encoding the V region of the digested anti-GPC3 antibody into an appropriate expression vector as described above, an antibody expression vector can be obtained. At this time, if the gene encoding the antibody normal region (C region) and the gene encoding the V region are fused in an in-process, a chimeric antibody is obtained. The term " chimeric antibody " herein refers to a region in which the origin of a normal region is different from that of a variable region. Thus, in addition to a heterologous chimeric antibody such as a mouse-human, a human-human homologous chimeric antibody is also included in the chimeric antibody of the present invention. By inserting the V region gene into an expression vector having a normal region in advance, a chimeric antibody expression vector can be constructed. Specifically, for example, a restriction enzyme recognition sequence for digesting the V region gene at the 5 'side of an expression vector retaining a DNA coding for a desired antibody normal region (C region) may be appropriately arranged . The chimeric antibody expression vector is constructed by the fusion of the same combination of the two digested enzymes with the restriction enzyme.
항GPC3 모노클로날 항체를 제조하기 위해서, 항체 유전자가 발현 제어 영역에 의한 제어하에서 발현하도록 발현 벡터에 짜 넣어진다. 항체를 발현하기 위한 발현 제어 영역이란, 예를 들면, 인핸서나 프로모터를 포함한다. 또한, 발현된 항체가 세포 외로 분비되도록, 적절한 시그널 서열이 아미노 말단에 부가될 수 있다. 이후에 기재되는 실시예에서는 시그널 서열로서, 아미노산 서열 MGWSCIILFLVATATGVHS(서열번호: 3)를 갖는 펩타이드가 사용되고 있지만, 이것 이외에도 적합한 시그널 서열이 부가된다. 발현된 폴리펩타이드는 상기 서열의 카복실 말단 부분에서 절단되고, 절단된 폴리펩타이드가 성숙 폴리펩타이드로서 세포 외로 분비될 수 있다. 이어서, 이 발현 벡터에 의해 적당한 숙주 세포가 형질 전환되는 것에 의해, 항GPC3 항체를 코딩하는 DNA를 발현하는 재조합 세포가 취득될 수 있다.To prepare anti-GPC3 monoclonal antibodies, the antibody gene is incorporated into an expression vector such that it is expressed under the control of the expression control region. The expression control region for expressing the antibody includes, for example, an enhancer or a promoter. In addition, an appropriate signal sequence may be added to the amino terminus such that the expressed antibody is secreted out of the cell. In the embodiment described later, as the signal sequence, a peptide having the amino acid sequence MGWSCIILFLVATATGVHS (SEQ ID NO: 3) is used, but in addition to this, a suitable signal sequence is added. The expressed polypeptide is cleaved at the carboxyl terminal portion of the sequence, and the cleaved polypeptide can be secreted extracellularly as a mature polypeptide. Subsequently, by transforming a suitable host cell with this expression vector, a recombinant cell expressing the DNA encoding the anti-GPC3 antibody can be obtained.
항체 유전자의 발현을 위해서, 항체 중쇄(H쇄) 및 경쇄(L쇄)를 코딩하는 DNA는, 각각 다른 발현 벡터에 짜 넣어진다. H쇄와 L쇄가 짜 넣어진 벡터에 의해, 동일한 숙주 세포에 동시에 형질 전환(co-transfect)되는 것에 의해, H쇄와 L쇄를 구비한 항체 분자가 발현될 수 있다. 또는 H쇄 및 L쇄를 코딩하는 DNA가 단일의 발현 벡터에 짜 넣어지는 것에 의해 숙주 세포가 형질 전환될 수 있다(국제공개 WO94/11523을 참조).For the expression of the antibody gene, the DNA encoding the antibody heavy chain (H chain) and the light chain (L chain) are incorporated into different expression vectors, respectively. An antibody molecule having the H chain and the L chain can be expressed by co-transfecting the same host cell by a vector incorporating an H chain and an L chain. Alternatively, host cells can be transformed by incorporating the DNA encoding the H and L chains into a single expression vector (see WO 94/11523).
단리된 항체 유전자를 적당한 숙주에 도입하는 것에 의해 항체를 제작하기 위한 숙주 세포와 발현 벡터의 많은 조합이 공지이다. 이들 발현계는, 모두 본 발명의 항체 가변 영역을 포함하는 도메인을 단리하는 데 응용될 수 있다. 진핵 세포가 숙주 세포로서 사용되는 경우, 동물 세포, 식물 세포, 또는 진균 세포가 적절히 사용될 수 있다. 구체적으로는, 동물 세포로서는, 다음과 같은 세포가 예시될 수 있다.Many combinations of host cells and expression vectors for the production of antibodies by introducing the isolated antibody gene into an appropriate host are known. All of these expression systems can be applied to isolate a domain containing the antibody variable region of the present invention. When eukaryotic cells are used as host cells, animal cells, plant cells, or fungal cells may be suitably used. Specifically, as animal cells, the following cells can be exemplified.
(1) 포유류 세포: CHO, COS, 골수종, BHK(baby hamster kidney), Hela, Vero 등(1) mammalian cells: CHO, COS, myeloma, baby hamster kidney (BHK), Hela, Vero, etc.
(2) 양서류 세포: 아프리카발톱개구리 난모 세포 등(2) Amphibian cells: African clawed frog germ cells, etc.
(3) 곤충 세포: sf9, sf21, Tn5 등(3) Insect cells: sf9, sf21, Tn5, etc.
또는 식물 세포로서는, 니코티아나 타바쿰(Nicotiana tabacum) 등의 니코티아나(Nicotiana)속 유래의 세포에 의한 항체 유전자의 발현계가 공지이다. 식물 세포의 형질 전환에는, 캘러스 배양한 세포가 적절히 이용될 수 있다.As a plant cell, an expression system of an antibody gene by cells derived from the genus Nicotiana such as Nicotiana tabacum is known. For transformation of plant cells, callus-cultured cells can be suitably used.
또 진균 세포로서는, 다음과 같은 세포를 이용할 수 있다.As fungal cells, the following cells can be used.
-효모: 사카로마이세스 세레비시애(Saccharomyces serevisiae) 등의 사카로마이세스(Saccharomyces)속, 메탄올 자화 효모(Pichia pastoris) 등의 Pichia속- Yeast: Saccharomyces such as Saccharomyces serevisiae, Pichia pastoris such as methanol,
-사상균: 아스퍼질러스 니제르(Aspergillus niger) 등의 아스퍼질러스(Aspergillus)속- Aspergillus: Aspergillus such as Aspergillus niger
또한, 원핵 세포를 이용한 항체 유전자의 발현계도 공지이다. 예를 들어, 세균 세포를 이용하는 경우, 대장균(E. coli), 고초균 등의 세균 세포가 적절히 이용될 수 있다. 이들 세포 중에, 목적으로 하는 항체 유전자를 포함하는 발현 벡터가 형질 전환에 의해 도입된다. 형질 전환된 세포를 in vitro에서 배양하는 것에 의해, 당해 형질 전환 세포의 배양물로부터 원하는 항체가 취득될 수 있다.Also, the expression system of an antibody gene using prokaryotic cells is known. For example, when bacterial cells are used, bacterial cells such as E. coli and Bacillus subtilis can be suitably used. Among these cells, an expression vector containing the desired antibody gene is introduced by transformation. By culturing the transformed cells in vitro, the desired antibody can be obtained from the culture of the transformed cells.
재조합 항체의 산생에는, 상기 숙주 세포에 더하여, 트랜스제닉 동물도 이용될 수 있다. 즉 원하는 항체를 코딩하는 유전자가 도입된 동물로부터, 당해 항체를 얻을 수 있다. 예를 들면, 항체 유전자는, 유즙 중에 고유하게 산생되는 단백질을 코딩하는 유전자의 내부에 인프레임으로 삽입하는 것에 의해 융합 유전자로서 구축될 수 있다. 유즙 중에 분비되는 단백질로서, 예를 들어, 염소 β 카제인 등을 이용할 수 있다. 항체 유전자가 삽입된 융합 유전자를 포함하는 DNA 단편은 염소의 배(胚)로 주입되고, 당해 주입된 배가 암컷의 염소로 도입된다. 배를 수용한 염소로부터 태어나는 트랜스제닉 염소(또는 그의 자손)가 산생하는 유즙으로부터는, 원하는 항체가 유즙 단백질과의 융합 단백질로서 취득될 수 있다. 또한, 트랜스제닉 염소로부터 산생되는 원하는 항체를 포함하는 유즙량을 증가시키기 위해서, 호르몬이 트랜스제닉 염소에 대해서 투여될 수 있다(Bio/Technology (1994), 12 (7), 699-702).For production of recombinant antibodies, in addition to the host cells described above, transgenic animals may also be used. That is, the antibody can be obtained from an animal into which a gene encoding a desired antibody has been introduced. For example, an antibody gene can be constructed as a fusion gene by inserting the gene encoding the protein that is inherently produced in the milk into the inside of the gene encoding the gene. As a protein secreted in milk, for example, chlorine beta casein can be used. The DNA fragment containing the fusion gene into which the antibody gene is inserted is injected into the embryo of chlorine, and the injected embryo is introduced into the female chlorine. From the milk from which the transgenic chlorine (or its offspring) born from the chlorine containing the embryo is produced, the desired antibody can be obtained as a fusion protein with the milk protein. In addition, hormones can be administered for transgenic chlorine (Bio / Technology (1994), 12 (7), 699-702) to increase the amount of milk containing the desired antibody produced from the transgenic chlorine.
본 명세서에 있어서 기재되는 항원 결합 분자가 인간에 투여되는 경우, 당해 항원 결합 분자에 있어서의 항체 가변 영역을 포함하는 도메인으로서, 인간에 대한 이종 항원성을 저하시키는 것 등을 목적으로 해서 인위적으로 개변한 유전자 재조합형 항체 유래의 도메인이 적절히 채용될 수 있다. 유전자 재조합형 항체에는, 예를 들면, 인간화(Humanized) 항체 등이 포함된다. 이들 개변 항체는 공지의 방법을 이용하여 적절히 제조된다.When the antigen-binding molecule described in the present specification is administered to a human, a domain including an antibody variable region in the antigen-binding molecule is artificially modified for the purpose of lowering heterologous antigenicity to a human, etc. A domain derived from one gene recombinant antibody can be suitably employed. The recombinant type antibody includes, for example, a humanized antibody. These modified antibodies are suitably prepared using known methods.
본 명세서에 있어서 기재되는 항원 결합 분자에 있어서의 항체 가변 영역을 포함하는 도메인을 제작하기 위해서 이용되는 항체의 가변 영역은, 통상, 4개의 프레임워크 영역(FR) 사이에 끼워진 3개의 상보성 결정 영역(complementarity-determining region; CDR)으로 구성되어 있다. CDR은, 실질적으로 항체의 결합특이성을 결정하고 있는 영역이다. CDR의 아미노산 서열은 다양성이 풍부하다. 한편, FR을 구성하는 아미노산 서열은 상이한 결합특이성을 갖는 항체 사이에서도 높은 동일성을 나타내는 경우가 많다. 그 때문에, 일반적으로 CDR의 이식에 의해, 어떤 항체의 결합특이성을 다른 항체에 이식할 수 있다고 여겨지고 있다.The variable region of the antibody used for producing the domain including the antibody variable region in the antigen-binding molecule described in this specification is generally composed of three complementary crystal regions (hereinafter referred to as " complementarity-determining region (CDR). The CDR is a region that substantially determines the binding specificity of the antibody. The amino acid sequence of the CDRs is rich in diversity. On the other hand, the amino acid sequences constituting FR often show high identity between antibodies having different binding specificities. Therefore, it is generally believed that the binding specificity of an antibody can be transplanted into another antibody by the transplantation of CDRs.
인간화 항체는 재구성(reshaped) 인간 항체라고도 칭해진다. 구체적으로는, 인간 이외의 동물, 예를 들어 마우스 항체의 CDR을 인간 항체에 이식한 인간화 항체 등이 공지이다. 인간화 항체를 얻기 위한 일반적인 유전자 재조합 수법도 알려져 있다. 구체적으로는, 마우스의 항체의 CDR을 인간의 FR에 이식하기 위한 방법으로서, 예를 들어 Overlap Extension PCR이 공지이다. Overlap Extension PCR에 있어서는, 인간 항체의 FR을 합성하기 위한 프라이머에, 이식해야 할 마우스 항체의 CDR을 코딩하는 염기 서열이 부가된다. 프라이머는 4개의 FR의 각각에 대하여 준비된다. 일반적으로, 마우스 CDR의 인간 FR에 대한 이식에 있어서는, 마우스의 FR과 동일성이 높은 인간 FR을 선택하는 것이 CDR의 기능의 유지에 있어서 유리하다고 여겨지고 있다. 즉, 일반적으로, 이식해야 할 마우스 CDR에 인접해 있는 FR의 아미노산 서열과 동일성이 높은 아미노산 서열로 이루어지는 인간 FR을 이용하는 것이 바람직하다.Humanized antibodies are also referred to as reshaped human antibodies. Specifically, it is known that an animal other than a human, for example, a humanized antibody transplanted with a CDR of a mouse antibody into a human antibody is known. General methods for genetic recombination for obtaining humanized antibodies are also known. Specifically, for example, Overlap Extension PCR is known as a method for transplanting a CDR of an antibody of a mouse into a human FR. In Overlap Extension PCR, a base sequence encoding the CDR of mouse antibody to be transplanted is added to a primer for synthesizing FR of a human antibody. The primer is prepared for each of the four FRs. Generally, in the transplantation of mouse CDRs into human FRs, it is considered that the selection of human FRs having high identity with the FRs of mice is advantageous in maintaining the function of CDRs. That is, in general, it is preferable to use a human FR consisting of an amino acid sequence having high identity with the amino acid sequence of the FR adjacent to the mouse CDR to be transplanted.
또한, 연결되는 염기 서열은 서로 인프레임으로 접속되도록 디자인된다. 각각의 프라이머에 의해 인간 FR이 개별적으로 합성된다. 그 결과, 각 FR에 마우스 CDR을 코딩하는 DNA가 부가된 산물이 얻어진다. 각 산물의 마우스 CDR을 코딩하는 염기 서열은 서로 오버랩되도록 디자인되어 있다. 계속해서, 인간 항체 유전자를 주형으로 해서 합성된 산물의 오버랩된 CDR 부분을 서로 어닐링시켜 상보쇄 합성 반응이 행해진다. 이 반응에 의해, 인간 FR이 마우스 CDR의 서열을 개재해서 연결된다.Also, the base sequences to be linked are designed to be connected in an infrequent manner to each other. Human FRs are individually synthesized by respective primers. As a result, a product in which DNA encoding mouse CDR is added to each FR is obtained. The base sequences encoding mouse CDRs of each product are designed to overlap each other. Subsequently, the complementary synthesis reaction is performed by annealing the overlapping CDR portions of the products synthesized using the human antibody gene as a template. By this reaction, the human FR is linked via the sequence of the mouse CDR.
최종적으로 3개의 CDR과 4개의 FR이 연결된 V 영역 유전자는, 그의 5' 말단과 3' 말단에 어닐링하여 적당한 제한 효소 인식 서열이 부가된 프라이머에 의해 그의 전장(全長)이 증폭된다. 상기와 같이 얻어진 DNA와 인간 항체 C 영역을 코딩하는 DNA를 인프레임으로 융합하도록 발현 벡터 중에 삽입하는 것에 의해, 인간형 항체 발현용 벡터를 작성할 수 있다. 해당 조합 벡터를 숙주에 도입하여 재조합 세포를 수립한 후에, 해당 재조합 세포를 배양하고, 해당 인간화 항체를 코딩하는 DNA를 발현시키는 것에 의해, 해당 인간화 항체가 해당 배양 세포의 배양물 중에 산생된다(유럽 특허공개 EP 239400, 국제공개 WO1996/002576 참조).Finally, the V region gene to which three CDRs and four FRs are linked is annealed at the 5 'end and the 3' end thereof, and its full length (full length) is amplified by a primer to which an appropriate restriction enzyme recognition sequence is added. The humanized antibody expression vector can be prepared by inserting the thus obtained DNA and the DNA encoding the human antibody C region into the expression vector so as to fuse in an inframe. The recombinant cells are cultured by introducing the combination vector into the host and then the recombinant cells are cultured and the DNA encoding the humanized antibody is expressed so that the humanized antibody is produced in the culture of the cultured cells Patent publication EP 239400, International Publication WO1996 / 002576).
상기와 같이 제작된 인간화 항체의 항원에 대한 결합 활성을 정성적 또는 정량적으로 측정하여, 평가하는 것에 의해, CDR을 개재해서 연결되었을 때에 해당 CDR이 양호한 항원 결합 부위를 형성하는 인간 항체의 FR을 적합하게 선택할 수 있다. 필요에 따라, 재구성 인간 항체의 CDR이 적절한 항원 결합 부위를 형성하도록 FR의 아미노산 잔기를 치환할 수도 있다. 예를 들어, 마우스 CDR의 인간 FR에 대한 이식에 이용한 PCR법을 응용하여, FR에 아미노산 서열의 변이를 도입할 수 있다. 구체적으로는, FR에 어닐링하는 프라이머에 부분적인 염기 서열의 변이를 도입할 수 있다. 이와 같은 프라이머에 의해 합성된 FR에는, 염기 서열의 변이가 도입된다. 아미노산을 치환한 변이형 항체의 항원에 대한 결합 활성을 상기의 방법으로 측정하여 평가하는 것에 의해 원하는 성질을 갖는 변이 FR 서열이 선택될 수 있다(Sato, K. et al., Cancer Res, 1993, 53, 851-856).By quantitatively or qualitatively measuring the binding activity of the humanized antibody prepared as described above to the antigen, FR of a human antibody that forms an antigen-binding site having a favorable CDR when ligated through the CDR is suitably You can choose to. Optionally, the amino acid residues of the FRs may be substituted so that the CDRs of the reconstituted human antibodies form appropriate antigen binding sites. For example, the mutation of the amino acid sequence can be introduced into the FR by applying the PCR method used for transplantation of the mouse CDR to the human FR. Specifically, partial nucleotide sequence variation can be introduced into the primer annealing to the FR. In the FR synthesized by such a primer, mutation of the base sequence is introduced. Mutant FR sequences with desired properties can be selected by measuring and assessing the binding activity of the variant antibody substituted with an amino acid to the antigen in the manner described above (Sato, K. et al., Cancer Res, 1993, 53, 851-856).
또한, 인간 항체 유전자의 모든 레퍼토리를 갖는 트랜스제닉 동물(국제공개 WO1993/012227, WO1992/003918, WO1994/002602, WO1994/025585, WO1996/034096, WO1996/033735 참조)을 면역 동물로 하고, DNA 면역에 의해 원하는 인간 항체가 취득될 수 있다.In addition, transgenic animals having all repertoires of human antibody genes (International Publication Nos. WO993 / 012227, WO992 / 003918, WO994 / 002602, WO994 / 025585, WO996 / 034096 and WO996 / 033735) The desired human antibody can be obtained.
또, 인간 항체 라이브러리를 이용하여, 팬닝에 의해 인간 항체를 취득하는 기술도 알려져 있다. 예를 들면, 인간 항체의 V 영역이 1본쇄 항체(scFv)로서 파지 디스플레이법에 의해 파지의 표면에 발현된다. 항원에 결합하는 scFv를 발현하는 파지가 선택될 수 있다. 선택된 파지의 유전자를 해석하는 것에 의해, 항원에 결합하는 인간 항체의 V 영역을 코딩하는 DNA 서열을 결정할 수 있다. 항원에 결합하는 scFv의 DNA 서열을 결정한 후, 당해 V 영역 서열을 원하는 인간 항체 C 영역의 서열과 인프레임으로 융합시킨 후에 적당한 발현 벡터에 삽입하는 것에 의해 발현 벡터가 제작될 수 있다. 당해 발현 벡터를 상기에 예로 든 바와 같은 적합한 발현 세포 중에 도입하고, 해당 인간 항체를 코딩하는 유전자를 발현시키는 것에 의해 당해 인간 항체가 취득된다. 이들 방법은 이미 공지이다(국제공개 WO1992/001047, WO1992/020791, WO1993/006213, WO1993/011236, WO1993/019172, WO1995/001438, WO1995/015388 참조).In addition, a technique of acquiring a human antibody by panning using a human antibody library is also known. For example, the V region of a human antibody is expressed on the surface of a phage by a phage display method as a single-chain antibody (scFv). A phage that expresses an scFv that binds to an antigen can be selected. By analyzing the gene of the selected phage, the DNA sequence encoding the V region of the human antibody that binds to the antigen can be determined. An expression vector can be prepared by determining the DNA sequence of an scFv binding to an antigen and then inserting the V region sequence into an appropriate expression vector after fusing the desired human antibody C region with the sequence of the desired human antibody C region. The human antibody is obtained by introducing the expression vector into a suitable expression cell as described above and expressing a gene encoding the human antibody. These methods are already known (see International Publication Nos. WO992 / 001047, WO992 / 020791, WO993 / 006213, WO993 / 011236, WO993 / 019172, WO995 / 001438, WO995 / 015388).
글리피칸 3(GPC3) 결합 활성을 갖는 항체 가변 영역을 포함하는 도메인A domain containing an antibody variable region having glypicane 3 (GPC3) binding activity
본 명세서에 있어서, 「글리피칸 3(GPC3) 결합 활성을 갖는 항체 가변 영역을 포함하는 도메인」이란, 상기 GPC3 단백질 또는 그의 부분 펩타이드의 일부 또는 전부에 특이적으로 결합하고 또한 상보적인 영역을 포함하여 이루어지는 항체의 부분을 말한다. 항체 가변 영역을 포함하는 도메인은 1 또는 복수의 항체의 가변 도메인으로부터 제공될 수 있다. 바람직하게는, 항체 가변 영역을 포함하는 도메인은 항체 경쇄 가변 영역(VL)과 항체 중쇄 가변 영역(VH)을 포함한다. 이러한 항체 가변 영역을 포함하는 도메인의 예로서는, 「scFv(single chain Fv)」, 「단쇄 항체(single chain antibody)」, 「Fv」, 「scFv2(single chain Fv 2)」, 「Fab」 또는 「F(ab')2」 등을 적합하게 들 수 있다.As used herein, the term " domain containing an antibody variable region having glycopancin 3 (GPC3) binding activity " means a domain that specifically binds to some or all of the GPC3 protein or a partial peptide thereof and includes a complementary region Refers to the portion of the antibody that is made. A domain comprising an antibody variable region may be provided from a variable domain of one or more antibodies. Preferably, the domain comprising the antibody variable region comprises an antibody light chain variable region (VL) and an antibody heavy chain variable region (VH). Examples of domains containing such antibody variable regions include "scFv (single chain Fv)", "single chain antibody", "Fv", "scFv2 (single chain Fv2)", "Fab" (ab ') 2 ", and the like.
T 세포 수용체 복합체 결합 활성을 갖는 항체 가변 영역을 포함하는 도메인A domain comprising an antibody variable region having T cell receptor complex binding activity
본 명세서에 있어서, 「T 세포 수용체 복합체 결합 활성을 갖는 항체 가변 영역을 포함하는 도메인」이란, T 세포 수용체 복합체의 일부 또는 전부에 특이적으로 결합하고 또한 상보적인 영역을 포함하여 이루어지는 T 세포 수용체 복합체 항체의 부분을 말한다. T 세포 수용체 복합체는, T 세포 수용체 자신이어도 되고, T 세포 수용체와 함께 T 세포 수용체 복합체를 구성하는 어댑터 분자여도 된다. 어댑터로서 적합한 것은 CD3이다.As used herein, the term " domain including an antibody variable region having T cell receptor complex binding activity " means a T cell receptor complex comprising a complementary region specifically binding to a part or the whole of a T cell receptor complex Refers to a portion of an antibody. The T cell receptor complex may be a T cell receptor itself or an adapter molecule constituting a T cell receptor complex together with a T cell receptor. Suitable as an adapter is CD3.
T 세포 수용체 결합 활성을 갖는 항체 가변 영역을 포함하는 도메인A domain comprising an antibody variable region having T cell receptor binding activity
본 명세서에 있어서, 「T 세포 수용체 결합 활성을 갖는 항체 가변 영역을 포함하는 도메인」이란, T 세포 수용체의 일부 또는 전부에 특이적으로 결합하고 또한 상보적인 영역을 포함하여 이루어지는 T 세포 수용체 항체의 부분을 말한다.As used herein, the term " domain comprising an antibody variable region having T cell receptor binding activity " refers to a domain of a T cell receptor antibody that specifically binds to some or all of the T cell receptor and also includes a complementary region .
본 발명의 도메인이 결합하는 T 세포 수용체의 부분으로서는, 가변 영역이어도 되고, 정상 영역이어도 되지만, 바람직하게는 정상 영역에 존재하는 에피토프이다. 정상 영역의 서열로서, 예를 들면 RefSeq 등록번호 CAA26636.1의 T 세포 수용체 α쇄(서열번호: 4), RefSeq 등록번호 C25777의 T 세포 수용체 β쇄(서열번호: 5), RefSeq 등록번호 A26659의 T 세포 수용체 γ1쇄(서열번호: 6), RefSeq 등록번호 AAB63312.1의 T 세포 수용체 γ2쇄(서열번호: 7), RefSeq 등록번호 AAA61033.1의 T 세포 수용체 δ쇄(서열번호: 8)의 서열을 들 수 있다.The portion of the T cell receptor to which the domain of the present invention binds may be a variable region or a normal region, but is preferably an epitope present in a normal region. (SEQ ID NO: 4) of RefSeq Accession No. CAA26636.1, T cell receptor beta chain (SEQ ID NO: 5) of RefSeq Accession No. C25777, SEQ ID NO: 5 of RefSeq Accession No. A26659 (SEQ ID NO: 6) of the T
CD3 결합 활성을 갖는 항체 가변 영역을 포함하는 도메인A domain comprising an antibody variable region having CD3 binding activity
본 명세서에 있어서, 「CD3 결합 활성을 갖는 항체 가변 영역을 포함하는 도메인」이란, CD3의 일부 또는 전부에 특이적으로 결합하고 또한 상보적인 영역을 포함하여 이루어지는 CD3 항체의 부분을 말한다. 바람직하게는, 당해 도메인은 항CD3 항체의 경쇄 가변 영역(VL)과 항CD3 항체의 중쇄 가변 영역(VH)을 포함한다. 이러한 도메인의 예로서는, 「scFv(single chain Fv)」, 「단쇄 항체(single chain antibody)」, 「Fv」, 「scFv2(single chain Fv 2)」, 「Fab」 또는 「F(ab')2」 등을 적합하게 들 수 있다.As used herein, the term " a domain comprising an antibody variable region having CD3 binding activity " refers to a portion of CD3 antibody that specifically binds to some or all of CD3 and also includes a complementary region. Preferably, the domain comprises a light chain variable region (VL) of an anti-CD3 antibody and a heavy chain variable region (VH) of an anti-CD3 antibody. Examples of such domains include "scFv (single chain Fv)", "single chain antibody", "Fv", "scFv2 (single chain Fv 2)", "Fab" And the like.
본 발명에 따른 CD3 결합 활성을 갖는 항체 가변 영역을 포함하는 도메인은, 인간 CD3을 구성하는 γ쇄, δ쇄 또는 ε쇄 서열에 존재하는 에피토프이면 어느 에피토프에 결합하는 것이어도 된다. 본 발명에 있어서, 바람직하게는 인간 CD3 복합체의 ε쇄의 세포 외 영역에 존재하는 에피토프에 결합하는 항CD3 항체의 경쇄 가변 영역(VL)과 항CD3 항체의 중쇄 가변 영역(VH)을 포함하는 도메인이 적합하게 이용된다. 이러한 도메인으로서는, 실시예에 기재된 항CD3 항체의 경쇄 가변 영역(VL)과 항CD3 항체의 중쇄 가변 영역(VH) 외에, OKT3 항체(Proc. Natl. Acad. Sci. USA (1980) 77, 4914-4917)나 여러 가지의 공지의 CD3 항체의 경쇄 가변 영역(VL)과 CD3 항체의 중쇄 가변 영역(VH)을 포함하는 CD3 결합 도메인이 적합하게 이용된다. 또한, 인간 CD3을 구성하는 γ쇄, δ쇄 또는 ε쇄를 상기의 방법에 의해 원하는 동물에 면역하는 것에 의해 취득된 원하는 성질을 갖는 항CD3 항체를 기원으로 하는 항체 가변 영역을 포함하는 도메인이 적절히 사용될 수 있다. CD3 결합 활성을 갖는 항체 가변 영역을 포함하는 도메인의 기원이 되는 항CD3 항체는 상기한 대로 적절히 인간화된 항체나 인간 항체가 적절히 이용된다. CD3을 구성하는 γ쇄, δ쇄 또는 ε쇄의 구조는, 그의 폴리뉴클레오타이드 서열이, 서열번호: 9(NM_000073.2), 10(NM_000732.4) 및 11(NM_000733.3)에, 그의 폴리펩타이드 서열이, 서열번호: 12(NP_000064.1), 13(NP_000723.1) 및 14(NP_000724.1)에 기재되어 있다(괄호 내는 RefSeq 등록번호를 나타낸다).The domain comprising the antibody variable region having the CD3 binding activity according to the present invention may bind to any epitope as long as it is an epitope existing in the? Chain,? Chain or? Chain sequence constituting human CD3. In the present invention, preferably, a domain comprising the light chain variable region (VL) of the anti-CD3 antibody binding to the epitope existing in the extracellular region of the? Chain of the human CD3 complex and the heavy chain variable region (VH) of the anti- Is appropriately used. As such a domain, an OKT3 antibody (Proc. Natl. Acad. Sci. USA (1980) 77, 4914-A) was used in addition to the light chain variable region (VL) of the anti-CD3 antibody described in the Examples and the heavy chain variable region 4917) or the CD3 binding domain comprising the light chain variable region (VL) of various known CD3 antibodies and the heavy chain variable region (VH) of the CD3 antibody are suitably used. In addition, a domain containing an antibody variable region originating from an anti-CD3 antibody having desired properties acquired by immunizing a desired animal with the? Chain,? Chain or? Chain constituting human CD3 by the above method is suitably Can be used. An anti-CD3 antibody which is a source of a domain comprising an antibody variable region having CD3 binding activity is suitably humanized or humanized as described above. The structure of the? Chain,? Chain or? Chain constituting CD3 is such that its polynucleotide sequence is identical to SEQ ID NO: 9 (NM_000073.2), 10 (NM_000732.4) and 11 (NM_000733.3) The sequence is described in SEQ ID NO: 12 (NP_000064.1), 13 (NP_000723.1) and 14 (NP_000724.1) (parentheses indicate RefSeq registration number).
본 발명의 항원 결합 분자에 있어서의 항체 가변 영역을 포함하는 도메인은, 동일한 에피토프에 결합할 수 있다. 여기에서 동일한 에피토프는, 서열번호: 2 또는 서열번호: 14에 기재된 아미노산 서열로 이루어지는 단백질 중에 존재할 수 있다. 또는 본 발명의 항원 결합 분자에 있어서의 항체 가변 영역을 포함하는 도메인은, 서로 상이한 에피토프에 결합할 수 있다. 여기에서 상이한 에피토프는, 서열번호: 2 또는 서열번호: 14에 기재된 아미노산 서열로 이루어지는 단백질 중에 존재할 수 있다.The domain comprising the antibody variable region in the antigen binding molecule of the present invention can bind to the same epitope. Wherein the same epitope may be present in a protein consisting of the amino acid sequence set forth in SEQ ID NO: 2 or SEQ ID NO: 14. Or the domain comprising the antibody variable region in the antigen binding molecule of the present invention may bind to different epitopes. Wherein the different epitope may be in a protein consisting of the amino acid sequence set forth in SEQ ID NO: 2 or SEQ ID NO: 14.
특이적Specific
특이적이란, 특이적으로 결합하는 분자의 한쪽 분자가 그 하나 또는 복수의 결합하는 상대쪽 분자 이외의 분자에 대해서는 전혀 유의한 결합을 나타내지 않는 상태를 말한다. 또한, 항체 가변 영역을 포함하는 도메인이, 어떤 항원 중에 포함되는 복수의 에피토프 중 특정 에피토프에 대해서 특이적인 경우에도 이용된다. 또한, 항체 가변 영역을 포함하는 도메인이 결합하는 에피토프가 복수의 상이한 항원에 포함되는 경우에는, 당해 항체 가변 영역을 포함하는 도메인을 갖는 항원 결합 분자는 당해 에피토프를 포함하는 다양한 항원과 결합할 수 있다.Specificity refers to a state in which one molecule of a specifically binding molecule does not show any significant binding to a molecule other than the mating counterpart molecule of the one or more binding molecules. The domain containing the antibody variable region is also used when it is specific to a specific epitope among a plurality of epitopes contained in an antigen. In addition, when an epitope to which a domain containing an antibody variable region binds is contained in a plurality of different antigens, an antigen-binding molecule having a domain comprising the antibody variable domain can bind to various antigens including the epitope in question .
에피토프Epitope
항원 중에 존재하는 항원 결정기를 의미하는 에피토프는, 본 명세서에 있어서 개시되는 항원 결합 분자 중의 항체 가변 영역을 포함하는 도메인이 결합하는 항원 상의 부위를 의미한다. 따라서, 예를 들면 에피토프는, 그의 구조에 의해 정의될 수 있다. 또한, 당해 에피토프를 인식하는 항원 결합 분자 중의 항원에 대한 결합 활성에 의해서도 당해 에피토프가 정의될 수 있다. 항원이 펩타이드 또는 폴리펩타이드인 경우에는, 에피토프를 구성하는 아미노산 잔기에 의해 에피토프를 특정하는 것도 가능하다. 또한, 에피토프가 당쇄인 경우에는, 특정한 당쇄 구조에 의해 에피토프를 특정하는 것도 가능하다.An epitope representing an antigenic determinant present in an antigen means a site on an antigen to which a domain including an antibody variable region in the antigen-binding molecule disclosed in the present specification binds. Thus, for example, an epitope can be defined by its structure. In addition, the epitope of interest can also be defined by binding activity to an antigen in an antigen-binding molecule that recognizes the epitope. When the antigen is a peptide or a polypeptide, it is also possible to specify the epitope by an amino acid residue constituting the epitope. When the epitope is a sugar chain, it is also possible to specify the epitope by a specific sugar chain structure.
직선상 에피토프는, 아미노산 일차 서열이 인식된 에피토프를 포함하는 에피토프이다. 직선상 에피토프는, 전형적으로는 적어도 3개, 가장 보통으로는 적어도 5개, 예를 들면 약 8∼약 10개, 6∼20개의 아미노산이 고유의 서열에서 포함된다.Linear epitopes are epitopes that contain an epitope in which the amino acid primary sequence is recognized. Linear epitopes typically comprise at least three, most usually at least five, such as about eight to about ten, and six to twenty amino acids in their unique sequences.
입체 구조 에피토프는, 직선상 에피토프와는 대조적으로, 에피토프를 포함하는 아미노산의 일차 서열이, 인식된 에피토프의 단일 규정 성분은 아닌 에피토프(예를 들면, 아미노산의 일차 서열이 반드시 에피토프를 규정하는 항체에 의해 인식되는 것은 아닌 에피토프)이다. 입체 구조 에피토프는, 직선상 에피토프에 대해서 증대된 수의 아미노산을 포함할지도 모른다. 입체 구조 에피토프의 인식에 관해서, 항체는, 펩타이드 또는 단백질의 삼차원 구조를 인식한다. 예를 들면, 단백질 분자가 접어 겹쳐져 삼차원 구조를 형성하는 경우에는, 입체 구조 에피토프를 형성하는 어떤 아미노산 및/또는 폴리펩타이드 주쇄는 병렬이 되어, 항체가 에피토프를 인식하는 것을 가능하게 한다. 에피토프의 입체 구조를 결정하는 방법에는, 예를 들면 X선 결정학, 이차원 핵 자기 공명 분광학 및 부위 특이적인 스핀 표지 및 전자 상자성 공명 분광학이 포함되지만, 이들에는 한정되지 않는다. 예를 들면, Epitope Mapping Protocols in Methods in Molecular Biology (1996), 제66권, Morris(편)를 참조.A stereostructured epitope is defined as an epitope in which, in contrast to a linear epitope, the primary sequence of the amino acid comprising the epitope is replaced by an epitope that is not a single defined component of the recognized epitope (e. G., The primary sequence of the amino acid is an epitope- Which is not recognized by the epitope). A stereostructural epitope may contain an increased number of amino acids for a linear epitope. With respect to recognition of stereostructural epitopes, antibodies recognize the three-dimensional structure of a peptide or protein. For example, when protein molecules fold over to form a three-dimensional structure, certain amino acids and / or polypeptide backbones that form a stereostructural epitope become in parallel, enabling the antibody to recognize the epitope. Methods for determining the stereostructure of the epitope include, but are not limited to, for example, X-ray crystallography, two-dimensional nuclear magnetic resonance spectroscopy, and site-specific spin marking and electron paramagnetic resonance spectroscopy. See, for example, Epitope Mapping Protocols in Methods in Molecular Biology (1996), Vol. 66, Morris.
하기에 GPC3에 대해서 결합 활성을 갖는 항체 가변 영역을 포함하는 도메인을 갖는 피험 항원 결합 분자에 의한 에피토프에 대한 결합의 확인 방법이 예시되는데, T 세포 수용체 복합체에 대해서 결합 활성을 갖는 항체 가변 영역을 포함하는 도메인을 갖는 피험 항원 결합 분자에 의한 에피토프에 대한 결합의 확인 방법도 하기의 예시에 준하여 적절히 실시될 수 있다.Hereinafter, a method for confirming the binding to an epitope by a test antigen-binding molecule having a domain comprising an antibody variable region having binding activity to GPC3 is exemplified, which includes an antibody variable region having a binding activity to a T cell receptor complex A method for confirming the binding to an epitope by a test antigen-binding molecule having a specific domain can be suitably conducted in accordance with the following examples.
예를 들면, GPC3에 대해서 결합 활성을 갖는 항체 가변 영역을 포함하는 도메인을 포함하는 피험 항원 결합 분자가, GPC3 분자 중에 존재하는 선상 에피토프를 인식하는 것은, 예를 들어 다음과 같이 해서 확인할 수 있다. 상기의 목적을 위해서 GPC3의 세포 외 도메인을 구성하는 아미노산 서열로 이루어지는 선상의 펩타이드가 합성된다. 당해 펩타이드는 화학적으로 합성될 수 있다. 또는, GPC3의 cDNA 중의, 세포 외 도메인에 상당하는 아미노산 서열을 코딩하는 영역을 이용하여, 유전자 공학적 수법에 의해 얻어진다. 다음으로, 세포 외 도메인을 구성하는 아미노산 서열로 이루어지는 선상 펩타이드와, GPC3에 대해서 결합 활성을 갖는 항체 가변 영역을 포함하는 도메인을 갖는 피험 항원 결합 분자의 결합 활성이 평가된다. 예를 들어, 고정화된 선상 펩타이드를 항원으로 하는 ELISA에 의해, 당해 펩타이드에 대한 당해 항원 결합 분자의 결합 활성이 평가될 수 있다. 또는, GPC3 발현 세포에 대한 당해 항원 결합 분자의 결합에 있어서의, 선상 펩타이드에 의한 저해의 레벨에 기초하여, 선상 펩타이드에 대한 결합 활성이 밝혀질 수 있다. 이들 시험에 의해, 선상 펩타이드에 대한 당해 항원 결합 분자의 결합 활성이 밝혀질 수 있다.For example, the fact that a test antigen-binding molecule comprising a domain containing an antibody variable region having binding activity to GPC3 recognizes a linear epitope present in GPC3 molecule can be confirmed, for example, as follows. For this purpose, a linear peptide consisting of an amino acid sequence constituting the extracellular domain of GPC3 is synthesized. The peptide can be chemically synthesized. Alternatively, it can be obtained by genetic engineering using a region encoding the amino acid sequence corresponding to the extracellular domain in the GPC3 cDNA. Next, the binding activity of a linear epitope consisting of an amino acid sequence constituting an extracellular domain and a test antigen-binding molecule having a domain containing an antibody variable region having binding activity to GPC3 is evaluated. For example, the binding activity of the antigen-binding molecule to the peptide can be evaluated by ELISA using the immobilized linear peptide as an antigen. Alternatively, the binding activity to the linear peptide can be revealed based on the level of inhibition by the linear peptide in the binding of the antigen binding molecule to the GPC3 expressing cell. These tests can reveal the binding activity of the antigen-binding molecule to the linear peptide.
또한, GPC3에 대해서 결합 활성을 갖는 항체 가변 영역을 포함하는 도메인을 갖는 피험 항원 결합 분자가 입체 구조 에피토프를 인식하는 것은, 다음과 같이 해서 확인될 수 있다. 상기의 목적을 위해서, GPC3을 발현하는 세포가 조제된다. GPC3에 대해서 결합 활성을 갖는 항체 가변 영역을 포함하는 도메인을 갖는 피험 항원 결합 분자가 GPC3 발현 세포에 접촉했을 때에 당해 세포에 강하게 결합하는 한편, 당해 항원 결합 분자가 고정화된 GPC3의 세포 외 도메인을 구성하는 아미노산 서열로 이루어지는 선상 펩타이드에 대해서 실질적으로 결합하지 않을 때 등을 들 수 있다. 여기에서, 실질적으로 결합하지 않는다란, 인간 GPC3 발현 세포에 대한 결합 활성의 80% 이하, 통상 50% 이하, 바람직하게는 30% 이하, 특히 바람직하게는 15% 이하의 결합 활성을 말한다.In addition, the fact that a test antigen-binding molecule having a domain containing an antibody variable region having a binding activity to GPC3 recognizes a stereostructure epitope can be confirmed as follows. For the above purpose, cells expressing GPC3 are prepared. When a test antigen-binding molecule having a domain containing an antibody-variable region having binding activity to GPC3 binds strongly to the cell when it contacts GPC3 expressing cells, it forms an extracellular domain of GPC3 to which the antigen-binding molecule is immobilized Or a peptide that does not substantially bind to a linear peptide consisting of an amino acid sequence of SEQ ID NO: Herein, substantially no binding means binding activity of not more than 80%, usually not more than 50%, preferably not more than 30%, particularly preferably not more than 15% of the binding activity to human GPC3 expressing cells.
GPC3에 대한 항원 결합 도메인을 포함하는 피험 항원 결합 분자의 GPC3 발현 세포에 대한 결합 활성을 측정하는 방법으로서는, 예를 들면, Antibodies A Laboratory Manual에 기재된 방법(Ed Harlow, David Lane, Cold Spring Harbor Laboratory (1988) 359-420)을 들 수 있다. 즉, GPC3 발현 세포를 항원으로 하는 ELISA나 FACS(fluorescence activated cell sorting)의 원리에 의해 평가될 수 있다.As a method for measuring the binding activity of a test antigen-binding molecule containing an antigen binding domain to GPC3 to GPC3 expressing cells, for example, a method described in Antibodies A Laboratory Manual (Ed Harlow, David Lane, Cold Spring Harbor Laboratory 1988) 359-420). That is, it can be evaluated by the principle of ELISA or FACS (fluorescence activated cell sorting) using GPC3 expressing cells as an antigen.
ELISA 포맷에 있어서, GPC3에 대한 항원 결합 도메인을 포함하는 피험 항원 결합 분자의 GPC3 발현 세포에 대한 결합 활성은, 효소 반응에 의해 생성되는 시그널 레벨을 비교하는 것에 의해 정량적으로 평가된다. 즉, GPC3 발현 세포를 고정화한 ELISA 플레이트에 피험 항원 결합 분자를 더하고, 세포에 결합한 피험 항원 결합 분자가, 피험 항원 결합 분자를 인식하는 효소 표지 항체를 이용하여 검출된다. 또는 FACS에 있어서는, 피험 항원 결합 분자의 희석 계열을 작성하고, GPC3 발현 세포에 대한 항체 결합 역가(titer)를 결정하는 것에 의해, GPC3 발현 세포에 대한 피험 항원 결합 분자의 결합 활성이 비교될 수 있다.In the ELISA format, the binding activity of GPC3 expressing cells of a test antigen binding molecule comprising an antigen binding domain to GPC3 was quantitatively evaluated by comparing the signal levels produced by the enzyme reaction. That is, a test antigen-binding molecule is added to an ELISA plate on which GPC3-expressing cells are immobilized, and the test antigen-binding molecule bound to the cell is detected using an enzyme-labeled antibody recognizing the test antigen-binding molecule. Or FACS, the binding activity of the test antigen-binding molecules to the GPC3-expressing cells can be compared by preparing a dilution series of the test antigen-binding molecule and determining the antibody binding titer to the GPC3 expressing cells .
완충액 등에 현탁된 세포 표면 상에 발현하고 있는 항원에 대한 피험 항원 결합 분자의 결합은, 플로 사이토미터에 의해 검출할 수 있다. 플로 사이토미터로서는, 예를 들면, 다음과 같은 장치가 알려져 있다.The binding of the antigen binding molecule to the antigen expressed on the cell surface suspended in a buffer or the like can be detected by a flow cytometer. As the flow cytometer, for example, the following devices are known.
FACSCantoTM IIFACSCanto TM II
FACSAriaTM FACSAria TM
FACSArrayTM FACSArray TM
FACSVantageTM SEFACSVantage TM SE
FACSCaliburTM(모두 BD Biosciences사의 상품명)FACSCalibur TM (all trade names of BD Biosciences)
EPICS ALTRA HyPerSortEPICS ALTRA HyPerSort
Cytomics FC 500
EPICS XL-MCL ADC EPICS XL ADCEPICS XL-MCL ADC EPICS XL ADC
Cell Lab Quanta/Cell Lab Quanta SC(모두 Beckman Coulter사의 상품명)Cell Lab Quanta / Cell Lab Quanta SC (all of Beckman Coulter)
예를 들면, GPC3에 대한 항원 결합 도메인을 포함하는 피험 항원 결합 분자의 항원에 대한 결합 활성의 적합한 측정 방법의 일례로서, 다음의 방법을 들 수 있다. 우선, GPC3을 발현하는 세포와 반응시킨 피험 항원 결합 분자를 인식하는 FITC 표지한 이차 항체로 염색한다. 피험 항원 결합 분자를 적절히 적합한 완충액에 의해 희석하는 것에 의해, 당해 회합체가 원하는 농도로 조제되어 이용된다. 예를 들면, 10μg/ml로부터 10ng/ml까지 사이의 어느 농도로 사용될 수 있다. 다음으로, FACSCalibur(BD사)에 의해 형광 강도와 세포수가 측정된다. 당해 세포에 대한 항체의 결합량은, CELL QUEST Software(BD사)를 이용하여 해석하는 것에 의해 얻어진 형광 강도, 즉 Geometric Mean의 값에 반영된다. 즉, 당해 Geometric Mean의 값을 얻는 것에 의해, 피험 항원 결합 분자의 결합량에 의해 나타내지는 피험 항원 결합 분자의 결합 활성이 측정될 수 있다.For example, as an example of a suitable method for measuring the binding activity of a test antigen-binding molecule containing an antigen binding domain to GPC3 to an antigen, the following method can be mentioned. First, the cells are stained with a FITC-labeled secondary antibody recognizing a test antigen-binding molecule reacted with cells expressing GPC3. By diluting the test antigen-binding molecule with a suitably appropriate buffer, the aggregate is prepared and used at a desired concentration. For example, it can be used at any concentration between 10 μg / ml and 10 ng / ml. Next, fluorescence intensity and cell number are measured by FACSCalibur (BD Co.). The binding amount of the antibody to the cell is reflected in the fluorescence intensity, that is, the value of the Geometric Mean obtained by analyzing using CELL QUEST Software (BD Corporation). That is, by obtaining the value of the Geometric Mean, the binding activity of the test antigen-binding molecule represented by the binding amount of the test antigen-binding molecule can be measured.
GPC3에 대한 항원 결합 도메인을 포함하는 피험 항원 결합 분자가, 어떤 항원 결합 분자와 에피토프를 공유하는 것은, 양자의 동일한 에피토프에 대한 경합에 의해 확인될 수 있다. 항원 결합 분자간의 경합은, 교차 블로킹 어세이 등에 의해 검출된다. 예를 들면 경합 ELISA 어세이는, 바람직한 교차 블로킹 어세이이다.A subject antigen binding molecule comprising an antigen binding domain for GPC3 shares an epitope with an antigen binding molecule can be identified by competition for the same epitope of both. Contention between the antigen binding molecules is detected by cross blocking assay or the like. For example, competition ELISA assays are preferred cross-blocking assays.
구체적으로는, 교차 블로킹 어세이에 있어서는, 마이크로타이터 플레이트의 웰 상에 코팅한 GPC3 단백질이, 후보가 되는 경합 항원 결합 분자의 존재하, 또는 비존재하에서 예비 인큐베이팅된 후에, 피험 항원 결합 분자가 첨가된다. 웰 중의 GPC3 단백질에 결합한 피험 항원 결합 분자의 양은, 동일한 에피토프에 대한 결합에 대해서 경합하는 후보가 되는 경합 항원 결합 분자의 결합능에 간접적으로 상관하고 있다. 즉 동일 에피토프에 대한 경합 항원 결합 분자의 친화성이 커지면 커질수록, 피험 항원 결합 분자의 GPC3 단백질을 코팅한 웰에 대한 결합 활성은 저하된다.Specifically, in the cross-blocking assay, after the GPC3 protein coated on the wells of the microtiter plate is pre-incubated in the presence or absence of the contending antigen binding molecule to be the candidate, . The amount of the test antigen binding molecule bound to the GPC3 protein in the well indirectly correlates with the binding ability of the contending antigen binding molecule to be contended for binding to the same epitope. That is, the greater the affinity of the competitive antigen binding molecule for the same epitope, the lower the binding activity of the test antigen binding molecule to the well coated with the GPC3 protein.
GPC3 단백질을 개재하여 웰에 결합한 피험 항원 결합 분자의 양은, 미리 항원 결합 분자를 표지해 두는 것에 의해, 용이하게 측정될 수 있다. 예를 들어, 비오틴 표지된 항원 결합 분자는, 아비딘 페록시다아제 콘쥬게이트와 적절한 기질을 사용하는 것에 의해 측정된다. 페록시다아제 등의 효소 표지를 이용한 교차 블로킹 어세이는, 특히 경합 ELISA 어세이라고 말해진다. 항원 결합 분자는, 검출 또는 측정이 가능한 다른 표지 물질로 표지될 수 있다. 구체적으로는, 방사 표지 또는 형광 표지 등이 공지이다.The amount of the test antigen-binding molecule bound to the well via the GPC3 protein can be easily measured by previously labeling the antigen-binding molecule. For example, a biotin labeled antigen binding molecule is measured by using an avidin peroxidase conjugate and a suitable substrate. Cross-blocking assays using enzyme markers such as peroxidase are said to be particularly competitive ELISA assays. The antigen binding molecule may be labeled with another labeling substance that is detectable or measurable. Concretely, a radiolabel or a fluorescent label is known.
후보의 경합 항원 결합 분자의 비존재하에서 실시되는 컨트롤 시험에서 얻어지는 결합 활성과 비교하여, 경합 항원 결합 분자가, GPC3에 대한 항원 결합 도메인을 포함하는 피험 항원 결합 분자의 결합을 적어도 20%, 바람직하게는 적어도 20∼50%, 더 바람직하게는 적어도 50% 블로킹할 수 있다면, 당해 피험 항원 결합 분자는 경합 항원 결합 분자와 실질적으로 동일한 에피토프에 결합하거나, 또는 동일한 에피토프에 대한 결합에 대해서 경합하는 항원 결합 분자이다.Compared to the binding activity obtained in a control test conducted in the absence of a candidate competition antigen binding molecule, it is preferred that the competition antigen binding molecule comprises at least 20% of the binding of the subject antigen binding molecule comprising the antigen binding domain to GPC3 Is capable of blocking at least 20 to 50%, more preferably at least 50%, the subject antigen-binding molecule binds to substantially the same epitope as the competition antigen-binding molecule or competes for binding to the same epitope It is a molecule.
GPC3에 대한 항원 결합 도메인을 포함하는 피험 항원 결합 분자가 결합하는 에피토프의 구조가 동정되어 있는 경우에는, 피험 항원 결합 분자와 대조 항원 결합 분자가 에피토프를 공유하는 것은, 당해 에피토프를 구성하는 펩타이드에 아미노산 변이를 도입한 펩타이드에 대한 양자의 항원 결합 분자의 결합 활성을 비교하는 것에 의해 평가될 수 있다.When the structure of the epitope to which the test antigen-binding molecule comprising the antigen-binding domain for GPC3 is identified is that the test antigen-binding molecule and the reference antigen-binding molecule share an epitope means that the peptide constituting the epitope has an amino acid Can be evaluated by comparing the binding activity of the antigen binding molecules of the two against the peptide that introduced the mutation.
이러한 결합 활성을 측정하는 방법으로서는, 예를 들면, 상기의 ELISA 포맷에 있어서 변이를 도입한 선상의 펩타이드에 대한 피험 항원 결합 분자 및 대조 항원 결합 분자의 결합 활성을 비교하는 것에 의해 측정될 수 있다. ELISA 이외의 방법으로서는, 컬럼에 결합한 당해 변이 펩타이드에 대한 결합 활성을, 당해 컬럼에 피검 항원 결합 분자와 대조 항원 결합 분자를 유하(流下)시킨 후에 용출액 중에 용출되는 항원 결합 분자를 정량하는 것에 의해서도 측정될 수 있다. 변이 펩타이드를 예를 들면 GST와의 융합 펩타이드로서 컬럼에 흡착시키는 방법은 공지이다.The method for measuring the binding activity can be measured, for example, by comparing the binding activity of a test antigen-binding molecule and a control antigen-binding molecule to a linear peptide to which a mutation has been introduced in the above ELISA format. As a method other than ELISA, the binding activity to the mutant peptide bound to the column can be measured by measuring the antigen-binding molecules eluted into the elution solution after the antigen-binding molecule and the reference antigen-binding molecule are flowed down to the column . A method of adsorbing a mutant peptide to a column as, for example, a fusion peptide with GST is known.
또한, 동정된 에피토프가 입체 에피토프인 경우에는, 피험 항원 결합 분자와 대조 항원 결합 분자가 에피토프를 공유하는 것은, 다음의 방법으로 평가될 수 있다. 우선, GPC3을 발현하는 세포와 에피토프에 변이가 도입된 GPC3을 발현하는 세포가 조제된다. 이들 세포가 PBS 등의 적절한 완충액에 현탁된 세포 현탁액에 대해서 피험 항원 결합 분자와 대조 항원 결합 분자가 첨가된다. 이어서, 적절히 완충액으로 세정된 세포 현탁액에 대해서, 피험 항원 결합 분자와 대조 항원 결합 분자를 인식할 수 있는 FITC 표지된 항체가 첨가된다. 표지 항체에 의해 염색된 세포의 형광 강도와 세포수가 FACSCalibur(BD사)에 의해 측정된다. 피험 항원 결합 분자와 대조 항원 결합 분자의 농도는 적합한 완충액에 의해 적절히 희석하는 것에 의해 원하는 농도로 조제하여 이용된다. 예를 들면, 10μg/ml로부터 10ng/ml까지 사이의 어느 농도로 사용된다. 당해 세포에 대한 표지 항체의 결합량은, CELL QUEST Software(BD사)를 이용하여 해석하는 것에 의해 얻어진 형광 강도, 즉 Geometric Mean의 값에 반영된다. 즉, 당해 Geometric Mean의 값을 얻는 것에 의해, 표지 항체의 결합량에 의해 나타내지는 피험 항원 결합 분자와 대조 항원 결합 분자의 결합 활성을 측정할 수 있다.In addition, when the identified epitope is a three-dimensional epitope, the epitope of the epitope of the test antigen-binding molecule and the control antigen-binding molecule can be evaluated by the following method. First, cells expressing GPC3 and cells expressing GPC3 having a mutation introduced into an epitope are prepared. The test antigen binding molecule and the reference antigen binding molecule are added to the cell suspension in which these cells are suspended in a suitable buffer such as PBS. Subsequently, for cell suspensions which are suitably washed with the buffer, a FITC labeled antibody capable of recognizing the test antigen binding molecule and the control antigen binding molecule is added. The fluorescence intensity and cell number of the stained cells by the labeled antibody are measured by FACSCalibur (BD). The concentration of the test antigen-binding molecule and the control antigen-binding molecule is adjusted by using a suitable buffer to prepare a desired concentration. For example, it is used at any concentration between 10 μg / ml and 10 ng / ml. The binding amount of the labeled antibody to the cell is reflected in the fluorescence intensity, that is, the value of the Geometric Mean obtained by analyzing using CELL QUEST Software (BD). That is, the binding activity of the test antigen-binding molecule and the reference antigen-binding molecule represented by the binding amount of the labeled antibody can be measured by obtaining the value of the Geometric Mean.
본 방법에 있어서, 예를 들면 「변이 GPC3 발현 세포에 실질적으로 결합하지 않는」 것은, 이하의 방법에 의해 판단할 수 있다. 우선, 변이 GPC3을 발현하는 세포에 대해서 결합한 피험 항원 결합 분자와 대조 항원 결합 분자를 표지 항체로 염색한다. 이어서 세포의 형광 강도를 검출한다. 형광 검출에 플로 사이토메트리로서 FACSCalibur를 이용한 경우, 얻어진 형광 강도는 CELL QUEST Software를 이용하여 해석될 수 있다. 항원 결합 분자 존재하 및 비존재하에서의 Geometric Mean의 값으로부터, 이 비교값(ΔGeo-Mean)을 하기의 계산식에 기초하여 산출하는 것에 의해, 항원 결합 분자의 결합에 의한 형광 강도의 증가 비율을 구할 수 있다.In the present method, for example, " not substantially binding to a mutant GPC3 expressing cell " can be judged by the following method. First, the test antigen-binding molecule and the reference antigen-binding molecule bound to the cells expressing the mutant GPC3 are stained with a labeling antibody. The fluorescence intensity of the cells is then detected. When FACSCalibur is used as a fluorescence cytometer for fluorescence detection, the obtained fluorescence intensity can be analyzed using CELL QUEST Software. From the value of the Geometric Mean in the presence and absence of the antigen-binding molecule, the increase ratio of the fluorescence intensity due to binding of the antigen-binding molecules can be obtained by calculating this comparison value (? Geo-Mean) have.
ΔGeo-Mean=Geo-Mean(항원 결합 분자 존재하)/Geo-Mean(항원 결합 분자 비존재하)? Geo-Mean = Geo-Mean (in the presence of the antigen binding molecule) / Geo-Mean (in the absence of the antigen binding molecule)
해석에 의해 얻어지는 피험 항원 결합 분자의 변이 GPC3 발현 세포에 대한 결합량이 반영된 Geometric Mean 비교값(변이 GPC3 분자 ΔGeo-Mean값)을, 피험 항원 결합 분자의 GPC3 발현 세포에 대한 결합량이 반영된 ΔGeo-Mean 비교값과 비교한다. 이 경우에 있어서, 변이 GPC3 발현 세포 및 GPC3 발현 세포에 대한 ΔGeo-Mean 비교값을 구할 때에 사용하는 피험 항원 결합 분자의 농도는 서로 동일하거나 또는 실질적으로 동일한 농도로 조정되는 것이 특히 바람직하다. 미리 GPC3 중의 에피토프를 인식하고 있는 것이 확인된 항원 결합 분자가 대조 항원 결합 분자로서 이용된다.(GPC3 molecule ΔGeo-Mean value) that reflects the binding amount of the test antigen binding molecule obtained by the analysis to the GPC3-expressing cells is compared with the ΔGeo-Mean reflecting the binding amount of the test antigen binding molecule to the GPC3-expressing cells Value. In this case, it is particularly preferable that the concentrations of the test antigen-binding molecules to be used in obtaining the comparative Gio-Mean values for the mutant GPC3 expressing cells and the GPC3 expressing cells are adjusted to the same or substantially the same level. An antigen-binding molecule confirmed to recognize an epitope in GPC3 in advance is used as a control antigen-binding molecule.
피험 항원 결합 분자의 변이 GPC3 발현 세포에 대한 ΔGeo-Mean 비교값이, 피험 항원 결합 분자의 GPC3 발현 세포에 대한 ΔGeo-Mean 비교값의 적어도 80%, 바람직하게는 50%, 더 바람직하게는 30%, 특히 바람직하게는 15%보다 작으면, 「변이 GPC3 발현 세포에 실질적으로 결합하지 않는」 것으로 한다. Geo-Mean값(Geometric Mean)을 구하는 계산식은 CELL QUEST Software User's Guide(BD biosciences사)에 기재되어 있다. 비교값을 비교하는 것에 의해 그것이 실질적으로 동일한 것으로 볼 수 있는 정도이면, 피험 항원 결합 분자와 대조 항원 결합 분자의 에피토프는 동일하다고 평가될 수 있다.The mutation of the test antigen binding molecule is preferably at least 80%, preferably 50%, more preferably 30%, of the ΔGeo-Mean comparison value of the GPC3 expressing cells of the test antigen binding molecule to the GPC-expressing cells. , And particularly preferably less than 15%, it is assumed that " the mutation does not substantially bind to GPC3 expressing cells ". The equation for obtaining the Geometric Mean is described in the CELL QUEST Software User's Guide (BD biosciences). By comparison of the comparison values, the epitopes of the test antigen binding molecule and the reference antigen binding molecule can be evaluated to be the same as if they were found to be substantially identical.
Fv(variable fragment)Fv (variable fragment)
본 명세서에 있어서, 「Fv(variable fragment)」라는 용어는, 항체의 경쇄 가변 영역(VL(light chain variable region))과 항체의 중쇄 가변 영역(VH(heavy chain variable region))의 쌍으로 이루어지는 항체 유래의 항원 결합 도메인의 최소 단위를 의미한다. 1988년에 Skerra와 Pluckthun은, 박테리아의 시그널 서열의 하류에 항체의 유전자를 삽입하여 대장균 중에서 당해 유전자의 발현을 유도하는 것에 의해, 균일하고 또한 활성을 유지한 상태에서 대장균의 페리플라즘 분획으로부터 조제된다는 것을 발견했다(Science (1988) 240 (4855), 1038-1041). 페리플라즘 분획으로부터 조제된 Fv는, 항원에 대한 결합을 갖는 태양으로 VH와 VL이 회합하고 있었다.As used herein, the term " Fv (variable fragment) " refers to an antibody comprising a pair of an antibody light chain variable region (VL) and an antibody heavy chain variable region (VH) Quot; means the smallest unit of the antigen binding domain from which the < / RTI > In 1988, Skerra and Pluckthun reported that, by inserting a gene of an antibody into the downstream of the signal sequence of bacteria to induce the expression of the gene in E. coli, they were isolated from the periplasmic fraction of Escherichia coli (Science (1988) 240 (4855), 1038-1041). The Fv prepared from the periplasmic fraction had a binding to the antigen, and VH and VL were associated with each other.
본 명세서에 있어서, Fv로서는, 예를 들면 이하의 항원 결합 분자; In the present specification, Fv includes, for example, the following antigen binding molecules;
2가의 scFv 중 1가의 scFv가 CD3 결합 도메인을 구성하는 중쇄 Fv 단편을 개재하여 Fc 영역을 구성하는 하나의 폴리펩타이드에, 다른 쪽의 1가의 scFv가 CD3 결합 도메인을 구성하는 경쇄 Fv 단편을 개재하여 Fc 영역을 구성하는 다른 쪽의 하나의 폴리펩타이드에 연결된 2가의 항원 결합 도메인이 2가의 scFv인 (1) 2가의 항원 결합 도메인, (2) IgG1, IgG2a, IgG3 또는 IgG4의 Fc 영역을 구성하는 아미노산 중 Fcγ 수용체에 대한 결합 활성을 갖지 않는 Fc 영역을 포함하는 도메인, 및 (3) 적어도 1가의 CD3 결합 도메인The monovalent scFv of the bivalent scFv binds to one polypeptide constituting the Fc region via the heavy chain Fv fragment constituting the CD3 binding domain and the other monovalent scFv binds to the polypeptide via the light chain Fv fragment constituting the CD3 binding domain (1) a divalent antigen binding domain in which the divalent antigen binding domain connected to the other polypeptide constituting the Fc region is a divalent scFv, (2) an amino acid sequence that constitutes the Fc region of IgG1, IgG2a, IgG3 or IgG4 A domain comprising an Fc region that does not have binding activity for an Fc? Receptor, and (3) a domain comprising at least a monovalent CD3 binding domain
을 포함하는 항원 결합 분자 등에 있어서 경쇄 Fv 단편 및 중쇄 Fv 단편이, 항원인 CD3에 대한 결합을 갖는 태양으로 회합하여 CD3 결합 도메인을 구성하는 1조의 Fv도 적합하게 포함된다.The light chain Fv fragment and the heavy chain Fv fragment in the antigen-binding molecule or the like suitably include a Fv that associates with the antigen binding site of CD3 to form the CD3 binding domain.
scFv, 단쇄 항체, 또는 sc(Fv)2scFv, single chain antibody, or sc (Fv) 2
본 명세서에 있어서, 「scFv」, 「단쇄 항체」, 또는 「sc(Fv)2」라는 용어는, 단일 폴리펩타이드쇄 내에, 중쇄 및 경쇄의 양쪽에서 유래하는 가변 영역을 포함하지만, 정상 영역이 빠져 있는 항체 단편을 의미한다. 일반적으로, 단쇄 항체는, 항원 결합을 가능하게 한다고 생각되는 원하는 구조를 형성하는 것을 가능하게 하는, VH 도메인과 VL 도메인 사이의 폴리펩타이드 링커를 추가로 포함한다. 단쇄 항체는, The Pharmacology of Monoclonal Antibodies, 113권, Rosenburg, 및 Moore편, Springer-Verlag, New York, 269∼315(1994)에 있어서 Pluckthun에 의해 상세하게 고찰되어 있다. 마찬가지로, 국제 특허출원공개 WO1988/001649 및 미국 특허 제4,946,778호 및 동 제5,260,203호를 참조. 특정 태양에 있어서, 단쇄 항체는 또한, 이중특이성이거나 또한/또는 인간화될 수 있다.As used herein, the term " scFv ", " single chain antibody ", or " sc (Fv) 2 " includes variable regions derived from both heavy and light chains within a single polypeptide chain, ≪ / RTI > Generally, a single chain antibody further comprises a polypeptide linker between the VH domain and the VL domain, which makes it possible to form the desired structure which is believed to enable antigen binding. Single chain antibodies are discussed in detail by Pluckthun in The Pharmacology of Monoclonal Antibodies, Vol. 113, Rosenburg, and Moore, Springer-Verlag, New York, 269-315 (1994). Similarly, see International Patent Application Publication Nos. WO1988 / 001649 and U.S. Pat. Nos. 4,946,778 and 5,260,203. In certain embodiments, the single chain antibody may also be bispecific and / or humanized.
scFv는 Fv를 구성하는 VH와 VL이 펩타이드 링커에 의해 연결된 항원 결합 도메인이다(Proc. Natl. Acad. Sci. U.S.A. (1988) 85 (16), 5879-5883). 당해 펩타이드 링커에 의해 VH와 VL이 근접한 상태로 유지될 수 있다.scFv is an antigen binding domain in which VH and VL constituting Fv are linked by a peptide linker (Proc. Natl. Acad. Sci. U.S.A. (1988) 85 (16), 5879-5883). VH and VL can be kept close to each other by the peptide linker.
sc(Fv)2는 2개의 VL과 2개의 VH의 4개의 가변 영역이 펩타이드 링커 등의 링커에 의해 연결되어 1본쇄를 구성하는 단쇄 항체이다(J Immunol. Methods (1999) 231 (1-2), 177-189). 이 2개의 VH와 VL은 상이한 모노클로날 항체로부터 유래하는 것도 있을 수 있다. 예를 들면, Journal of Immunology (1994) 152 (11), 5368-5374에 개시되어 있는 바와 같은 동일 항원 중에 존재하는 2종류의 에피토프를 인식하는 이중특이성(bispecific sc(Fv)2)도 적합하게 들 수 있다. sc(Fv)2는 당업자에게 공지인 방법에 의해 제작될 수 있다. 예를 들면, scFv를 펩타이드 링커 등의 링커로 연결하는 것에 의해 제작될 수 있다.sc (Fv) 2 is a single chain antibody in which four variable regions of two VLs and two VHs are linked by a linker such as a peptide linker to form a single strand (J Immunol. Methods (1999) 231 (1-2) , 177-189). The two VH and VL may be derived from different monoclonal antibodies. Bispecific sc (Fv) 2, which recognizes two epitopes present in the same antigen as disclosed in, for example, Journal of Immunology (1994) 152 (11), 5368-5374, . sc (Fv) 2 can be produced by methods known to those skilled in the art. For example, it can be produced by linking scFv to a linker such as a peptide linker.
본 명세서에 있어서의 sc(Fv)2를 구성하는 항원 결합 도메인의 구성으로서는, 2개의 VH 및 2개의 VL이, 1본쇄 폴리펩타이드의 N 말단측을 기점으로 해서 VH, VL, VH, VL([VH]링커[VL]링커[VH]링커[VL])의 순으로 나열되어 있는 것을 특징으로 하는 항체를 들 수 있지만, 2개의 VH와 2개의 VL의 순서는 특별히 상기의 구성에 한정되지 않고, 어떠한 순서로 나열되어 있어도 된다. 예를 들면 이하와 같은 순서의 구성도 들 수 있다.As the constitution of the antigen-binding domain constituting sc (Fv) 2 in the present specification, two VHs and two VLs are represented by VH, VL, VH and VL ([ VH] linker [VL] linker [VH] linker [VL]). However, the order of two VHs and two VLs is not particularly limited to the above configuration, They may be listed in any order. For example, the following sequence may be used.
[VL]링커[VH]링커[VH]링커[VL][VL] Linker [VH] Linker [VH] Linker [VL]
[VH]링커[VL]링커[VL]링커[VH][VH] Linker [VL] Linker [VL] Linker [VH]
[VH]링커[VH]링커[VL]링커[VL][VH] Linker [VH] Linker [VL] Linker [VL]
[VL]링커[VL]링커[VH]링커[VH][VL] Linker [VL] Linker [VH] Linker [VH]
[VL]링커[VH]링커[VL]링커[VH][VL] Linker [VH] Linker [VL] Linker [VH]
sc(Fv)2의 분자 형태에 대해서는 WO2006/132352에서도 상세하게 기재되어 있어, 당업자라면 이들 기재에 기초하여, 본 명세서에서 개시되는 항원 결합 분자의 제작을 위해서 적절히 원하는 sc(Fv)2를 제작하는 것이 가능하다.The molecular form of sc (Fv) 2 is described in detail in WO2006 / 132352, and those skilled in the art will be able to make sc (Fv) 2 as appropriate for the production of the antigen- It is possible.
또한 본 발명의 항원 결합 분자는, PEG 등의 캐리어 고분자나 항암제 등의 유기 화합물을 콘쥬게이트해도 된다. 또한 당쇄 부가 서열을 삽입하고, 당쇄가 원하는 효과를 얻는 것을 목적으로 해서 적합하게 부가될 수 있다.The antigen-binding molecule of the present invention may be conjugated with a carrier polymer such as PEG or an organic compound such as an anti-cancer agent. And the sugar chain addition sequence can be suitably added for the purpose of inserting the sugar chain sequence and obtaining the desired effect of the sugar chain.
항체의 가변 영역을 결합하는 링커로서는, 유전자 공학에 의해 도입할 수 있는 임의의 펩타이드 링커, 또는 합성 화합물 링커(예를 들면, Protein Engineering, 9 (3), 299-305, 1996 참조)에 개시되는 링커 등을 이용할 수 있지만, 본 발명에 있어서는 펩타이드 링커가 바람직하다. 펩타이드 링커의 길이는 특별히 한정되지 않고, 목적에 따라 당업자가 적절히 선택하는 것이 가능하지만, 바람직한 길이는 5 아미노산 이상(상한은 특별히 한정되지 않지만, 통상 30 아미노산 이하, 바람직하게는 20 아미노산 이하)이고, 특히 바람직하게는 15 아미노산이다. sc(Fv)2에 3개의 펩타이드 링커가 포함되는 경우에는, 모두 동일한 길이의 펩타이드 링커를 이용해도 되고, 상이한 길이의 펩타이드 링커를 이용해도 된다.Linkers that bind variable regions of an antibody include any peptide linker that can be introduced by genetic engineering, or a synthetic linker (see, e. G., Protein Engineering, 9 (3), 299-305, 1996) A linker and the like can be used, but in the present invention, a peptide linker is preferable. The length of the peptide linker is not particularly limited and may be suitably selected by those skilled in the art depending on the purpose. The preferred length is 5 amino acids or more (the upper limit is not particularly limited, but is usually 30 amino acids or less, preferably 20 amino acids or less) Particularly preferably 15 amino acids. When three peptide linkers are included in sc (Fv) 2, all of the peptide linkers of the same length may be used, or peptide linkers of different lengths may be used.
예를 들면, 펩타이드 링커의 경우: For example, for a peptide linker:
SerSer
Gly·SerGly · Ser
Gly·Gly·SerGly · Gly · Ser
Ser·Gly·GlySer · Gly · Gly
Gly·Gly·Gly·Ser(서열번호: 15)Gly Gly Gly Ser (SEQ ID NO: 15)
Ser·Gly·Gly·Gly(서열번호: 16)Ser. Gly. Gly. Gly (SEQ ID NO: 16)
Gly·Gly·Gly·Gly·Ser(서열번호: 17)Gly Gly Gly Gly Ser (SEQ ID NO: 17)
Ser·Gly·Gly·Gly·Gly(서열번호: 18)Ser, Gly, Gly, Gly, Gly (SEQ ID NO: 18)
Gly·Gly·Gly·Gly·Gly·Ser(서열번호: 19)Gly, Gly, Gly, Gly, Gly, Ser (SEQ ID NO: 19)
Ser·Gly·Gly·Gly·Gly·Gly(서열번호: 20)Ser, Gly, Gly, Gly, Gly, Gly (SEQ ID NO: 20)
Gly·Gly·Gly·Gly·Gly·Gly·Ser(서열번호: 21)Gly, Gly, Gly, Gly, Gly, Gly, Ser (SEQ ID NO: 21)
Ser·Gly·Gly·Gly·Gly·Gly·Gly(서열번호: 22)Ser, Gly, Gly, Gly, Gly, Gly, Gly (SEQ ID NO: 22)
(Gly·Gly·Gly·Gly·Ser(서열번호: 17))n(Gly Gly Gly Gly Ser (SEQ ID NO: 17)) n
(Ser·Gly·Gly·Gly·Gly(서열번호: 18))n(Ser.Gly.Gly.Gly.Gly.Gly (SEQ ID NO: 18)) n
[n은 1 이상의 정수이다] 등을 들 수 있다. 단, 펩타이드 링커의 길이나 서열은 목적에 따라 당업자가 적절히 선택할 수 있다.[n is an integer of 1 or more]. However, the length and sequence of the peptide linker can be appropriately selected by those skilled in the art depending on the purpose.
합성 화학물 링커(화학 가교제)는, 펩타이드의 가교에 통상 이용되고 있는 가교제, 예를 들면 N-하이드록시석신이미드(NHS), 다이석신이미딜수베레이트(DSS), 비스(설포석신이미딜)수베레이트(BS3), 다이싸이오비스(석신이미딜프로피오네이트)(DSP), 다이싸이오비스(설포석신이미딜프로피오네이트)(DTSSP), 에틸렌글리콜비스(석신이미딜석시네이트)(EGS), 에틸렌글리콜비스(설포석신이미딜석시네이트)(설포-EGS), 다이석신이미딜타타르산염(DST), 다이설포석신이미딜타타르산염(설포-DST), 비스[2-(석신이미드옥시카보닐옥시)에틸]설폰(BSOCOES), 비스[2-(설포석신이미드옥시카보닐옥시)에틸]설폰(설포-BSOCOES) 등이고, 이들 가교제는 시판되고 있다.Synthetic chemical linkers (chemical crosslinkers) can be used as cross-linking agents commonly used for cross-linking peptides, such as N-hydroxysuccinimide (NHS), diisostinimidylsuberate (DSS), bis (Sulphosuccinimidyl propionate) (DTSSP), ethylene glycol bis (succinic imidylsuccinate), dicyandiamide (DSS) (EGS), ethylene glycol bis (sulfosuccinimidylsuccinate) (sulfo-EGS), dicosyl imidyl tartarate (DST), disulfosuccinimidyl tartarate (sulfo-DST), bis [2- (Sulfosuccinimido carbonyloxy) ethyl] sulfone (sulfo-BSOCOES), etc. These crosslinking agents are commercially available.
4개의 항체 가변 영역을 결합하는 경우에는, 통상, 3개의 링커가 필요해지는데, 모두 같은 링커를 이용해도 되고, 상이한 링커를 이용해도 된다.When four antibody variable regions are combined, usually three linkers are required. All the same linkers may be used, or different linkers may be used.
Fab, F(ab')2, 또는 Fab'Fab, F (ab ') 2, or Fab '
「Fab」는, 1본의 경쇄, 및 1본의 중쇄의 CH1 영역 및 가변 영역으로 구성된다. Fab 분자의 중쇄는, 다른 중쇄 분자와의 다이설파이드 결합을 형성할 수 없다."Fab" is composed of a CH1 region and a variable region of a single light chain and a single heavy chain. The heavy chain of a Fab molecule can not form a disulfide bond with another heavy chain molecule.
「F(ab')2」 및 「Fab'」란, 이뮤노글로불린(모노클로날 항체)을 단백질 분해 효소인 펩신 또는 파파인 등으로 처리하는 것에 의해 제조되고, 힌지 영역 중의 2본의 H쇄간에 존재하는 다이설파이드 결합의 전후에 소화되어 생성되는 항체 프래그먼트를 의미한다. 예를 들면, IgG를 파파인으로 처리하는 것에 의해, 힌지 영역 중의 2본의 H쇄간에 존재하는 다이설파이드 결합의 상류에서 절단되어 VL(L쇄 가변 영역)과 CL(L쇄 정상 영역)로 이루어지는 L쇄, 및 VH(H쇄 가변 영역)와 CHγ1(H쇄 정상 영역 중의 γ1 영역)로 이루어지는 H쇄 프래그먼트가 C 말단 영역에서 다이설파이드 결합에 의해 결합한 상동인 2개의 항체 프래그먼트가 제조될 수 있다. 이들 2개의 상동인 항체 프래그먼트는 각각 Fab'라고 말해진다."F (ab ') 2" and "Fab'" are produced by treating an immunoglobulin (monoclonal antibody) with protease such as pepsin or papain, and between two H chains in the hinge region Quot; means an antibody fragment produced by digesting before and after an existing disulfide bond. For example, by treating IgG with papain, an L (L chain variable region) consisting of VL (L chain variable region) and CL (L chain normal region) is cleaved at the upstream of the disulfide bond existing between the two H chains in the hinge region Chain, and two antibody fragments, homologous in which the H chain fragment consisting of VH (H chain variable region) and CHγ1 (γ1 region in the H chain normal region) are bound by a disulfide bond in the C terminal region, can be produced. These two homologous antibody fragments are each referred to as Fab '.
「F(ab')2」는, 2본의 경쇄, 및, 쇄간의 다이설파이드 결합이 2개의 중쇄간에 형성되도록 CH1 도메인 및 CH2 도메인의 일부분의 정상 영역을 포함하는 2본의 중쇄를 포함한다. 본 명세서에 있어서 개시되는 항원 결합 분자를 구성하는 F(ab')2는, 원하는 항원 결합 도메인을 갖는 전장 모노클로날 항체 등을 펩신 등의 단백질 분해 효소로 부분 소화한 후에, Fc 단편을 프로테인 A 컬럼에 흡착시켜 제거하는 것에 의해, 적합하게 취득될 수 있다. 이러한 단백질 분해 효소로서는 pH 등의 효소의 반응 조건을 적절히 설정하는 것에 의해 제한적으로 F(ab')2가 생기도록 전장 항체를 소화할 수 있는 것이면 특단의 한정은 되지 않고, 예를 들면, 펩신이나 피신 등을 예시할 수 있다."F (ab ') 2" includes two heavy chains, including two light chains and a normal region of the CH1 domain and a portion of the CH2 domain such that a disulfide bond between the chains is formed between the two heavy chains. F (ab ') 2, which constitutes the antigen-binding molecule disclosed in the present specification, can be produced by partially digesting a whole-cell monoclonal antibody or the like having a desired antigen-binding domain with a protease such as pepsin, And then adsorbed on the column to remove it. Examples of such proteolytic enzymes include, but are not limited to, those capable of digesting the whole-length antibody such that the reaction conditions of the enzyme such as pH are suitably set to generate F (ab ') 2 in a limited manner. And the like can be exemplified.
Fc 영역Fc region
본 명세서에 있어서 개시되는 항원 결합 분자를 구성하는 Fc 영역은 모노클로날 항체 등의 항체를 펩신 등의 단백질 분해 효소로 부분 소화한 후에, 단편을 프로테인 A 컬럼, 또는 프로테인 G 컬럼에 흡착시킨 후에, 적절한 용출 버퍼 등에 의해 용출시키는 것에 의해 적합하게 취득될 수 있다. 이러한 단백질 분해 효소로서는 pH 등의 효소의 반응 조건을 적절히 설정하는 것에 의해 모노클로날 항체 등의 항체를 소화할 수 있는 것이면 특단의 한정은 되지 않고, 예를 들면, 펩신이나 피신 등을 예시할 수 있다.The Fc region constituting the antigen-binding molecule disclosed in the present specification may be obtained by partially digesting an antibody such as a monoclonal antibody with a protease such as pepsin and then adsorbing the fragment to a protein A column or a protein G column, And eluted with an appropriate elution buffer or the like. Examples of such proteolytic enzymes include, but are not limited to, those capable of digesting an antibody such as a monoclonal antibody by suitably setting the reaction conditions of the enzyme such as pH and the like. For example, pepsin and sebacin can be exemplified have.
본 명세서에 기재되는 항원 결합 분자에는 IgG1, IgG2, IgG3 또는 IgG4의 Fc 영역을 구성하는 아미노산 중 Fcγ 수용체에 대한 결합 활성이 저하되어 있는 Fc 영역이 포함된다.The antigen-binding molecules described in the present specification include Fc regions in which the binding activity to the Fc? Receptor among the amino acids constituting the Fc region of IgG1, IgG2, IgG3, or IgG4 is decreased.
항체의 아이소타입은 정상 영역의 구조에 의해 결정된다. IgG1, IgG2, IgG3, IgG4의 각 아이소타입의 정상 영역은, 각각 Cγ1, Cγ2, Cγ3, Cγ4라고 불리고 있다. 인간 Cγ1, Cγ2, Cγ3, Cγ4의 Fc 영역을 구성하는 폴리펩타이드의 아미노산 서열이 서열번호: 23, 24, 25, 26에 예시된다. 각 아미노산 서열을 구성하는 아미노산 잔기와, kabat의 EU 넘버링(본 명세서에 있어서 EU INDEX라고도 불린다)의 관계는 도 12에 나타나 있다.The isotype of the antibody is determined by the structure of the normal region. The normal regions of the respective isotypes of IgG1, IgG2, IgG3, and IgG4 are referred to as Cγ1, Cγ2, Cγ3, and Cγ4, respectively. The amino acid sequences of the polypeptides constituting the Fc region of human C? 1, C? 2, C? 3 and C? 4 are exemplified in SEQ ID NOs: 23, 24, 25 and 26. The relationship between the amino acid residues constituting each amino acid sequence and the EU numbering of kabat (also referred to as EU INDEX in this specification) is shown in Fig.
Fc 영역은, 2본의 경쇄, 및, 쇄간의 다이설파이드 결합이 2개의 중쇄간에 형성되도록 CH1 도메인 및 CH2 도메인간의 정상 영역의 일부분을 포함하는 2본의 중쇄를 포함하는 F(ab')2를 제외한 영역을 말한다. 본 명세서에 있어서 개시되는 항원 결합 분자를 구성하는 Fc 영역은, IgG1, IgG2, IgG3, IgG4 모노클로날 항체 등을 펩신 등의 단백질 분해 효소로 부분 소화한 후에, 프로테인 A 컬럼에 흡착된 분획을 재용출하는 것에 의해 적합하게 취득될 수 있다. 이러한 단백질 분해 효소로서는 pH 등의 효소의 반응 조건을 적절히 설정하는 것에 의해 제한적으로 F(ab')2가 생기도록 전장 항체를 소화할 수 있는 것이면 특단의 한정은 되지 않고, 예를 들면, 펩신이나 피신 등을 예시할 수 있다.The Fc region comprises two light chains and F (ab ') 2 comprising two heavy chains comprising a portion of the normal region between the CH1 domain and the CH2 domain such that a disulfide bond between the chains is formed between the two heavy chains It refers to the excluded area. The Fc region constituting the antigen-binding molecule disclosed in this specification can be obtained by partially digesting an IgG1, IgG2, IgG3, IgG4 monoclonal antibody or the like with a protease such as pepsin and then fractionating the fraction adsorbed on the protein A column Can be suitably acquired by shipment. Examples of such proteolytic enzymes include, but are not limited to, those capable of digesting the whole-length antibody such that the reaction conditions of the enzyme such as pH are suitably set to generate F (ab ') 2 in a limited manner. And the like can be exemplified.
Fcγ 수용체Fc? Receptor
Fcγ 수용체란, IgG1, IgG2, IgG3, IgG4 모노클로날 항체의 Fc 영역에 결합할 수 있는 수용체를 말하고, 실질적으로 Fcγ 수용체 유전자에 코딩되는 단백질 패밀리의 어떠한 멤버까지도 의미한다. 인간에서는, 이 패밀리에는, 아이소폼 FcγRIa, FcγRIb 및 FcγRIc를 포함하는 FcγRI(CD64); 아이소폼 FcγRIIa(알로타입 H131 및 R131을 포함한다), FcγRIIb(FcγRIIb-1 및 FcγRIIb-2를 포함한다) 및 FcγRIIc를 포함하는 FcγRII(CD32); 및 아이소폼 FcγRIIIa(알로타입 V158 및 F158을 포함한다) 및 FcγRIIIb(알로타입 FcγRIIIb-NA1 및 FcγRIIIb-NA2를 포함한다)를 포함하는 FcγRIII(CD16), 및 어떠한 미발견된 인간 FcγR류 또는 FcγR 아이소폼 또는 알로타입도 포함되지만, 이들에 한정되는 것은 아니다. FcγR은, 인간, 마우스, 래트, 토끼 및 원숭이를 포함하지만, 이들에 한정되는 것은 아닌, 어떠한 생물 유래여도 된다. 마우스 FcγR류에는, FcγRI(CD64), FcγRII(CD32), FcγRIII(CD16) 및 FcγRIII-2(CD16-2), 및 어떠한 미발견된 마우스 FcγR류 또는 FcγR 아이소폼 또는 알로타입도 포함되지만, 이들에 한정되지 않는다. 이러한 Fcγ 수용체의 적합한 예로서는 인간 FcγRI(CD64), FcγRIIA(CD32), FcγRIIB(CD32), FcγRIIIA(CD16) 및/또는 FcγRIIIB(CD16)를 들 수 있다. FcγRI의 폴리뉴클레오타이드 서열 및 아미노산 서열은 각각 서열번호: 27(NM_000566.3) 및 28(NP_000557.1)에, FcγRIIA의 폴리뉴클레오타이드 서열 및 아미노산 서열은 각각 서열번호: 29(BC020823.1) 및 30(AAH20823.1)에, FcγRIIB의 폴리뉴클레오타이드 서열 및 아미노산 서열은 각각 서열번호: 31(BC146678.1) 및 32(AAI46679.1)에, FcγRIIIA의 폴리뉴클레오타이드 서열 및 아미노산 서열은 각각 서열번호: 33(BC033678.1) 및 34(AAH33678.1)에, 및 FcγRIIIB의 폴리뉴클레오타이드 서열 및 아미노산 서열은 각각 서열번호: 35(BC128562.1) 및 36(AAI28563.1)에 기재되어 있다(괄호 내는 RefSeq 등록번호를 나타낸다). Fcγ 수용체가 IgG1, IgG2, IgG3, IgG4 모노클로날 항체의 Fc 영역에 결합 활성을 갖는지 여부는, 상기에 기재되는 FACS나 ELISA 포맷 외, ALPHA 스크린(Amplified Luminescent Proximity Homogeneous Assay)이나 표면 플라스몬 공명(SPR) 현상을 이용한 BIACORE법 등에 의해 확인될 수 있다(Proc.Natl.Acad.Sci.USA (2006) 103 (11), 4005-4010).An Fcγ receptor is a receptor capable of binding to the Fc region of an IgG1, IgG2, IgG3, or IgG4 monoclonal antibody, and refers to any member of the protein family that is substantially encoded by the Fcγ receptor gene. In humans, this family includes Fc [gamma] RI (CD64) comprising isoforms Fc [gamma] RIa, Fc [gamma] RIb and Fc [gamma] RIc; Fc? RII (CD32) comprising isoform Fc? RIIa (including allotypes H131 and R131), Fc? RIIb (including Fc? RIIb-1 and Fc? RIIb-2) and Fc? RIIc; And FcγRIII (CD16) comprising isoform FcγRIIIa (including allotypes V158 and F158) and FcγRIIIb (including allotypes FcγRIIIb-NA1 and FcγRIIIb-NA2), and any unidentified human FcγRs or FcγR isoforms Or allotypes, but are not limited thereto. Fc [gamma] R may be of any biological origin, including, but not limited to, human, mouse, rat, rabbit and monkey. Mouse FcγRs include FcγRI (CD64), FcγRII (CD32), FcγRIII (CD16) and FcγRIII-2 (CD16-2), and any undiscovered mouse FcγR or FcγR isoform or allotype, It is not limited. Suitable examples of such Fc receptors include human Fc? RI (CD64), Fc? RIA (CD32), Fc? RIIB (CD32), Fc? RIIA (CD16) and / or Fc? RIIB (CD16). The polynucleotide and amino acid sequences of Fc? RI are shown in SEQ ID NO: 27 (NM_000566.3) and 28 (NP_000557.1), respectively, and the polynucleotide and amino acid sequences of Fc? RIA are shown in SEQ ID NO: 29 (BC020823.1) and 30 31 (BC146678.1) and 32 (AAI46679.1), the polynucleotide sequence and amino acid sequence of Fc [gamma] RIIIA are shown in SEQ ID NO: 33 (BC033678 1 and 34 (AAH33678.1), and the polynucleotide and amino acid sequences of Fc [gamma] RIIB are described in SEQ ID NO: 35 (BC128562.1) and 36 (AAI28563.1), respectively ). Whether the Fc? Receptor has a binding activity to the Fc region of an IgG1, IgG2, IgG3, or IgG4 monoclonal antibody can be confirmed by using an ALPHA screen (Amplified Luminescent Proximity Homogeneous Assay) or surface plasmon resonance SPR) phenomenon (Proc. Natl. Acad. Sci. USA (2006) 103 (11), 4005-4010).
또한, 「Fc 리간드」 또는 「이펙터 리간드」는, 항체의 Fc 영역에 결합하여 Fc/Fc 리간드 복합체를 형성하는, 임의의 생물에서 유래하는 분자, 바람직하게는 폴리펩타이드를 의미한다. Fc 리간드의 Fc에 대한 결합은, 바람직하게는 1개 또는 그 이상의 이펙터 기능을 야기한다. Fc 리간드에는, Fc 수용체, FcγR, FcαR, FcεR, FcRn, C1q, C3, 만난 결합 렉틴, 만노스 수용체, 스타필로코커스의 프로테인 A, 스타필로코커스의 단백질 G 및 바이러스의 FcγR이 포함되지만, 이들에 한정되지 않는다. Fc 리간드에는, FcγR에 상동인 Fc 수용체의 패밀리인 Fc 수용체 상동체(FcRH)(Davis et al., (2002) Immunological Reviews 190, 123-136)도 포함된다. Fc 리간드에는, Fc에 결합하는 미발견된 분자도 포함될 수 있다.In addition, " Fc ligand " or " effector ligand " means a molecule, preferably a polypeptide, derived from any organism that binds to the Fc region of an antibody to form an Fc / Fc ligand complex. The binding of the Fc ligand to Fc preferably results in one or more effector functions. Fc ligand includes Fc receptor, Fc? R, Fc? R, Fc? R, FcRn, C1q, C3, mannan receptor lectin, mannose receptor, Protein A of Staphylococcus, Protein G of Staphylococcus and Fc? R of virus. It does not. Fc ligands also include the Fc receptor homolog (FcRH) (Davis et al., (2002) Immunological Reviews 190, 123-136), which is a family of Fc receptors homologous to Fc [gamma] R. The Fc ligand may also include undiscovered molecules that bind to Fc.
Fcγ 수용체에 대한 결합 활성Binding activity to Fc [gamma] receptors
Fc 영역이 FcγI, FcγIIA, FcγIIB, FcγIIIA 및/또는 FcγIIIB 중 어느 하나의 Fcγ 수용체에 대한 결합 활성이 저하되어 있는 것은, 상기에 기재되는 FACS나 ELISA 포맷 외, ALPHA 스크린(Amplified Luminescent Proximity Homogeneous Assay)이나 표면 플라스몬 공명(SPR) 현상을 이용한 BIACORE법 등에 의해 확인할 수 있다(Proc.Natl.Acad.Sci.USA (2006) 103 (11), 4005-4010).The binding activity of the Fc region to any one of the Fc? Receptors of Fc? I, Fc? IIA, Fc? IIB, Fc? IIIA and / or Fc? IIIIB is lowered by using an ALPHA screen (Amplified Luminescent Proximity Homogeneous Assay) Can be confirmed by BIACORE method using surface plasmon resonance (SPR) phenomenon (Proc. Natl. Acad. Sci. USA (2006) 103 (11), 4005-4010).
ALPHA 스크린은, 도너와 억셉터의 2개의 비드를 사용하는 ALPHA 테크놀로지에 의해 하기의 원리에 기초하여 실시된다. 도너 비드에 결합한 분자가, 억셉터 비드에 결합한 분자와 생물학적으로 상호 작용하고, 2개의 비드가 근접한 상태일 때에만, 발광 시그널이 검출된다. 레이저에 의해 여기된 도너 비드 내의 감광제(photosensitizer)는, 주변의 산소를 여기 상태의 일중항 산소로 변환한다. 일중항 산소는 도너 비드 주변에 확산되고, 근접해 있는 억셉터 비드에 도달하면 비드 내의 화학 발광 반응을 일으켜, 최종적으로 광이 방출된다. 도너 비드에 결합한 분자와 억셉터 비드에 결합한 분자가 상호 작용하지 않을 때에는, 도너 비드가 산생하는 일중항 산소가 억셉터 비드에 도달하지 않기 때문에, 화학 발광 반응은 일어나지 않는다.The ALPHA screen is implemented on the basis of the following principle by ALPHA technology using two beads of donor and acceptor. The molecule bound to the donor bead interacts biologically with molecules bound to the acceptor bead, and only when the two beads are in close proximity, the luminescent signal is detected. The photosensitizer in the donor bead excited by the laser converts the surrounding oxygen to singlet oxygen in the excited state. The singlet oxygen diffuses around the donor bead, and upon reaching the acceptor bead in close proximity, causes a chemiluminescent reaction in the bead and eventually emits light. When the molecule bound to the donor bead does not interact with the molecule bound to the acceptor bead, the chemiluminescent reaction does not occur because the monomolecular oxygen produced by the donor bead does not reach the acceptor bead.
예를 들면, 도너 비드에 비오틴 표지된 항원 결합 분자가 결합되고, 억셉터 비드에는 글루타싸이온 S 트랜스페라아제(GST)로 태그화된 Fcγ 수용체가 결합된다. 경합하는 변이 Fc 영역을 갖는 항원 결합 분자의 비존재하에서는, 야생형 Fc 영역을 갖는 항원 결합 분자와 Fcγ 수용체는 상호 작용하여 520-620nm의 시그널을 생기게 한다. 태그화되어 있지 않은 변이 Fc 영역을 갖는 항원 결합 분자는, 야생형 Fc 영역을 갖는 항원 결합 분자와 Fcγ 수용체간의 상호 작용과 경합한다. 경합의 결과 나타나는 형광의 감소를 정량하는 것에 의해 상대적인 결합 친화성이 결정될 수 있다. 항체 등의 항원 결합 분자를 Sulfo-NHS-비오틴 등을 이용하여 비오틴화하는 것은 공지이다. Fcγ 수용체를 GST로 태그화하는 방법으로서는, Fcγ 수용체를 코딩하는 폴리뉴클레오타이드와 GST를 코딩하는 폴리뉴클레오타이드를 인프레임으로 융합한 융합 유전자를 발현 가능한 벡터에 유지한 세포 등에 있어서 발현하고, 글루타싸이온 컬럼을 이용하여 정제하는 방법 등이 적절히 채용될 수 있다. 얻어진 시그널은 예를 들면 GRAPHPAD PRISM(GraphPad사, San Diego) 등의 소프트웨어를 이용하여 비선형 회귀 해석을 이용하는 일부위 경합(one-site competition) 모델에 적합시키는 것에 의해 적합하게 해석된다.For example, a biotin-labeled antigen-binding molecule is bound to a donor bead and an acceptor bead is bound to an Fc [gamma] receptor tagged with glutathione S-transferase (GST). In the absence of antigen-binding molecules with competing mutant Fc regions, the antigen-binding molecule with wild-type Fc region interacts with the Fc [gamma] receptor resulting in a signal of 520-620 nm. An antigen-binding molecule having a non-tagged mutant Fc region competes with an interaction between an antigen-binding molecule having a wild-type Fc region and an Fc? Receptor. The relative binding affinity can be determined by quantifying the decrease in fluorescence that appears as a result of competition. It is known that an antigen-binding molecule such as an antibody is biotinylated using Sulfo-NHS-biotin or the like. As a method of tagging the Fc? Receptor with GST, a method of expressing a fusion gene fused with a polynucleotide encoding an Fc? Receptor and a polynucleotide encoding GST in a cell maintained in a vector capable of expression is disclosed, and a Glutathione column Or the like, may be appropriately employed. The resulting signal is suitably interpreted by fitting it to some one-site competition model using nonlinear regression analysis, for example, using software such as GRAPHPAD PRISM (GraphPad, San Diego).
상호 작용을 관찰하는 물질의 한쪽(리간드)을 센서칩의 금박막 상에 고정하고, 센서칩의 뒤편으로부터 금박막과 유리의 경계면에서 전반사하도록 광을 비추면, 반사광의 일부에 반사 강도가 저하된 부분(SPR 시그널)이 형성된다. 상호 작용을 관찰하는 물질의 다른 쪽(애널라이트)을 센서칩의 표면에 흐르게 하여 리간드와 애널라이트가 결합하면, 고정화되어 있는 리간드 분자의 질량이 증가하고, 센서칩 표면의 용매의 굴절률이 변화한다. 이 굴절률의 변화에 의해, SPR 시그널의 위치가 시프트된다(반대로 결합이 해리되면 시그널의 위치는 되돌아간다). Biacore 시스템은 상기의 시프트되는 양, 즉 센서칩 표면에서의 질량 변화를 세로축에 취하고, 질량의 시간 변화를 측정 데이터로서 표시한다(센서그램). 센서그램의 커브로부터 카이네틱스: 결합 속도 상수(ka)와 해리 속도 상수(kd)가, 당해 상수의 비로부터 어피니티(KD)가 구해진다. BIACORE법에서는 저해 측정법도 적합하게 이용된다. 저해 측정법의 예는 Proc.Natl.Acad.Sci.USA (2006) 103 (11), 4005-4010에 기재되어 있다.When one side (ligand) of the substance observing the interaction is fixed on the gold thin film of the sensor chip and the light is projected to totally reflect on the interface between the gold thin film and the glass from the rear side of the sensor chip, (SPR signal) is formed. When the other side (analytes) of the substance observing the interaction flows on the surface of the sensor chip and the ligand and the analite are combined, the mass of the immobilized ligand molecules increases and the refractive index of the solvent on the sensor chip surface changes . This change in refractive index shifts the position of the SPR signal (or, conversely, when the coupling is dissociated, the position of the signal is reversed). The Biacore system takes the shift amount, that is, the mass change on the surface of the sensor chip on the vertical axis, and displays the time change of the mass as measurement data (sensorgram). From the curve of the sensorgram, the affinity (KD) is determined from the ratio of the kinetic: binding constant (ka) and the dissociation rate constant (kd) to the constant. The inhibition assay method is also suitably used in the BIACORE method. Examples of inhibition assays are described in Proc. Natl. Acad. Sci. USA (2006) 103 (11), 4005-4010.
본 명세서에 있어서, Fcγ 수용체에 대한 결합 활성이 저하되어 있다는 것은, 예를 들면, 상기의 해석 방법에 기초하여, 대조로 하는 항원 결합 분자의 경합 활성과 비교해서 피검 항원 결합 분자의 경합 활성이 50% 이하, 바람직하게는 45% 이하, 40% 이하, 35% 이하, 30% 이하, 20% 이하, 15% 이하, 특히 바람직하게는 10% 이하, 9% 이하, 8% 이하, 7% 이하, 6% 이하, 5% 이하, 4% 이하, 3% 이하, 2% 이하, 1% 이하의 결합 활성을 나타내는 것을 말한다.In the present specification, the fact that the binding activity to the Fc? Receptor is decreased means that the competition activity of the antigen-binding molecule to be tested is 50 %, Preferably not more than 45%, not more than 40%, not more than 35%, not more than 30%, not more than 20%, not more than 15%, particularly preferably not more than 10%, not more than 9%, not more than 8% 6% or less, 5% or less, 4% or less, 3% or less, 2% or less, 1% or less.
대조로 하는 항원 결합 분자로서는, IgG1, IgG2, IgG3 또는 IgG4 모노클로날 항체의 Fc 영역을 갖는 항원 결합 분자가 적절히 사용될 수 있다. 당해 Fc 영역의 구조는, 서열번호: 37(RefSeq 등록번호 AAC82527.1의 N 말단에 A 부가), 38(RefSeq 등록번호 AAB59393.1의 N 말단에 A 부가), 25(RefSeq 등록번호 CAA27268.1의 N 말단에 A 부가), 39(RefSeq 등록번호 AAB59394.1의 N 말단에 A 부가)에 기재되어 있다. 또한, 어떤 특정 아이소타입의 항체의 Fc 영역의 변이체를 갖는 항원 결합 분자를 피검 물질로서 사용하는 경우에는, 당해 특정 아이소타입의 항체의 Fc 영역을 갖는 항원 결합 분자를 대조로서 이용하는 것에 의해, 당해 변이체가 갖는 변이에 의한 Fcγ 수용체에 대한 결합 활성에 대한 효과가 검증된다. 상기와 같이 해서, Fcγ 수용체에 대한 결합 활성이 저하되어 있는 것이 검증된 Fc 영역의 변이체를 갖는 항원 결합 분자가 적절히 제작된다.An antigen binding molecule having an Fc region of an IgG1, IgG2, IgG3 or IgG4 monoclonal antibody may suitably be used as a control antigen-binding molecule. The structure of the Fc region includes SEQ ID NO: 37 (A addition at the N terminus of RefSeq registration number AAC82527.1), 38 (A addition at the N terminus of RefSeq registration number AAB59393.1), 25 (RefSeq accession number CAA27268.1 (A added at the N-terminus of RefSeq Accession No. AAB59394.1). In addition, when an antigen-binding molecule having a variant of the Fc region of an antibody of a certain isotype is used as a test substance, an antigen-binding molecule having an Fc region of the antibody of the specific isotype can be used as a control, The effect on the binding activity to Fc [gamma] receptors by mutations possessed is verified. As described above, an antigen-binding molecule having a variant of the Fc region proved to have decreased binding activity to the Fc? Receptor is suitably produced.
이와 같은 변이체의 예로서는, EU 넘버링에 따라 특정되는 아미노산인 231A-238S의 결실(WO2009/011941), C226S, C229S, P238S, (C220S) (J.Rheumatol (2007) 34, 11), C226S, C229S (Hum.Antibod.Hybridomas (1990) 1(1), 47-54), C226S, C229S, E233P, L234V, L235A (Blood (2007) 109, 1185-1192) 등의 변이체가 공지이다.Examples of such mutants include deletion of amino acids 231A-238S (WO2009 / 011941), C226S, C229S, P238S, (C220S) (J. Rheumatol (2007) 34,11), C226S, C229S Humans Antibody Hybridomas (1990) 1 (1), 47-54), C226S, C229S, E233P, L234V, L235A (Blood (2007) 109, 1185-1192).
즉, 특정 아이소타입의 항체의 Fc 영역을 구성하는 아미노산 중, EU 넘버링에 따라 특정되는 하기 중 어느 하나의 아미노산; 220위, 226위, 229위, 231위, 232위, 233위, 234위, 235위, 236위, 237위, 238위, 239위, 240위, 264위, 265위, 266위, 267위, 269위, 270위, 295위, 296위, 297위, 298위, 299위, 300위, 325위, 327위, 328위, 329위, 330위, 331위, 332위가 치환되어 있는 Fc 영역을 갖는 항원 결합 분자를 적합하게 들 수 있다. Fc 영역의 기원인 항체의 아이소타입으로서는 특별히 한정되지 않고, IgG1, IgG2, IgG3 또는 IgG4 모노클로날 항체를 기원으로 하는 Fc 영역이 적절히 이용될 수 있지만, IgG1 항체를 기원으로 하는 Fc 영역이 적합하게 이용된다.That is, of the amino acids constituting the Fc region of the antibody of the specific isotype, any of the following amino acids specified according to the EU numbering; 220, 226, 229, 231, 232, 233, 234, 235, 236, 237, 239, 240, 264, 265, 266, 267 , Fc, which is substituted for 269, 270, 295, 296, 297, 298, 299, 300, 325, 327, 328, 329, 330, 331, Antigen-binding molecule having a < RTI ID = 0.0 > region < / RTI > The isotype of the antibody originating in the Fc region is not particularly limited, and an Fc region originating from an IgG1, IgG2, IgG3 or IgG4 monoclonal antibody can be suitably used, but an Fc region originating from an IgG1 antibody is preferably used .
예를 들면, IgG1 항체의 Fc 영역을 구성하는 아미노산 중, EU 넘버링에 따라 특정되는 하기 중 어느 하나의 치환(숫자가 EU 넘버링에 따라 특정되는 아미노산 잔기의 위치, 숫자의 앞에 위치하는 1문자의 아미노산 기호가 치환 전의 아미노산 잔기, 숫자의 뒤에 위치하는 1문자의 아미노산 기호가 치환 전의 아미노산 잔기를 각각 나타낸다); For example, among the amino acids constituting the Fc region of the IgG1 antibody, substitution of any one of the following (the number is the position of the amino acid residue specified according to the EU numbering, the single-letter amino acid The symbol represents the amino acid residue before substitution, and the one-letter amino acid symbol after the numeral represents the amino acid residue before substitution);
(a) L234F, L235E, P331S,(a) L234F, L235E, P331S,
(b) C226S, C229S, P238S,(b) C226S, C229S, P238S,
(c) C226S, C229S,(c) C226S, C229S,
(d) C226S, C229S, E233P, L234V, L235A(d) C226S, C229S, E233P, L234V, L235A
(e) L234A, L235A 또는 L235R, N297A(e) L234A, L235A or L235R, N297A
(f) L235A 또는 L235R, S239K, N297A(f) L235A or L235R, S239K, N297A
가 실시되어 있는 Fc 영역, 또는 231위로부터 238위의 아미노산 서열이 결실된 Fc 영역을 갖는 항원 결합 분자도 적절히 사용될 수 있다.Or an Fc region in which the amino acid sequence at positions 231 to 238 have been deleted may also be suitably used.
또한, IgG2 항체의 Fc 영역을 구성하는 아미노산 중, EU 넘버링에 따라 특정되는 하기 중 어느 하나의 치환(숫자가 EU 넘버링에 따라 특정되는 아미노산 잔기의 위치, 숫자의 앞에 위치하는 1문자의 아미노산 기호가 치환 전의 아미노산 잔기, 숫자의 뒤에 위치하는 1문자의 아미노산 기호가 치환 전의 아미노산 잔기를 각각 나타낸다); In addition, among the amino acids constituting the Fc region of the IgG2 antibody, substitution of any one of the following (numbered according to the EU numbering), the position of the amino acid residue specified by the EU numbering, The amino acid residue before substitution, and the one-letter amino acid symbol after the number represent the amino acid residue before substitution, respectively);
(g) H268Q, V309L, A330S, P331S(g) H268Q, V309L, A330S, P331S
(h) V234A(h) V234A
(i) G237A(i) G237A
(j) V234A, G237A(j) V234A, G237A
(k) A235E, G237A(k) A235E, G237A
(l) V234A, A235E, G237A(l) V234A, A235E, G237A
가 실시되어 있는 Fc 영역을 갖는 항원 결합 분자도 적절히 사용될 수 있다.An antigen-binding molecule having an Fc region in which the Fc region has been introduced can also be suitably used.
또한, IgG3 항체의 Fc 영역을 구성하는 아미노산 중, EU 넘버링에 따라 특정되는 하기 중 어느 하나의 치환(숫자가 EU 넘버링에 따라 특정되는 아미노산 잔기의 위치, 숫자의 앞에 위치하는 1문자의 아미노산 기호가 치환 전의 아미노산 잔기, 숫자의 뒤에 위치하는 1문자의 아미노산 기호가 치환 전의 아미노산 잔기를 각각 나타낸다); Further, among the amino acids constituting the Fc region of the IgG3 antibody, substitution of any one of the following (numbered according to the EU numbering), the position of the amino acid residue specified by the EU numbering, The amino acid residue before substitution, and the one-letter amino acid symbol after the number represent the amino acid residue before substitution, respectively);
(m) F241A(m) F241A
(n) D265A(n) D265A
(o) V264A(o) V264A
가 실시되어 있는 Fc 영역을 갖는 항원 결합 분자도 적절히 사용될 수 있다.An antigen-binding molecule having an Fc region in which the Fc region has been introduced can also be suitably used.
또한, IgG4 항체의 Fc 영역을 구성하는 아미노산 중, EU 넘버링에 따라 특정되는 하기 중 어느 하나의 치환(숫자가 EU 넘버링에 따라 특정되는 아미노산 잔기의 위치, 숫자의 앞에 위치하는 1문자의 아미노산 기호가 치환 전의 아미노산 잔기, 숫자의 뒤에 위치하는 1문자의 아미노산 기호가 치환 전의 아미노산 잔기를 각각 나타낸다); In addition, among the amino acids constituting the Fc region of the IgG4 antibody, any one of the following substitutions (number is the position of the amino acid residue specified according to the EU numbering, and the single-letter amino acid symbol preceding the number specified by the EU numbering The amino acid residue before substitution, and the one-letter amino acid symbol after the number represent the amino acid residue before substitution, respectively);
(p) L235A, G237A, E318A(p) L235A, G237A, E318A
(q) L235E(q) L235E
(r) F234A, L235A(r) F234A, L235A
가 실시되어 있는 Fc 영역을 갖는 항원 결합 분자도 적절히 사용될 수 있다.An antigen-binding molecule having an Fc region in which the Fc region has been introduced can also be suitably used.
기타 바람직한 예로서, IgG1 항체의 Fc 영역을 구성하는 아미노산 중, EU 넘버링에 따라 특정되는 하기 중 어느 하나의 아미노산; 233위, 234위, 235위, 236위, 237위, 327위, 330위, 331위가, 대응하는 IgG2 또는 IgG4에 있어서 그 EU 넘버링이 대응하는 아미노산으로 치환되어 있는 Fc 영역을 갖는 항원 결합 분자를 들 수 있다.As another preferable example, among the amino acids constituting the Fc region of the IgG1 antibody, any one of the amino acids specified according to the EU numbering; 233, 234, 235, 236, 237, 327, 330, and 331 are antigen binding molecules having an Fc region in which the corresponding EU numbering is substituted for the corresponding amino acid in IgG2 or IgG4 .
기타 바람직한 예로서, IgG1 항체의 Fc 영역을 구성하는 아미노산 중, EU 넘버링에 따라 특정되는 하기 중 어느 하나 또는 그 이상의 아미노산; 234위, 235위, 297위가 다른 아미노산에 의해 치환되어 있는 Fc 영역을 갖는 항원 결합 분자를 적합하게 들 수 있다. 치환 후에 존재하는 아미노산의 종류는 특별히 한정되지 않지만, 234위, 235위, 297위 중 어느 하나 또는 그 이상의 아미노산이 알라닌으로 치환되어 있는 Fc 영역을 갖는 항원 결합 분자가 특히 바람직하다.As another preferred example, among the amino acids constituting the Fc region of the IgG1 antibody, any one or more of amino acids specified according to EU numbering; 234, 235, and 297 are replaced by other amino acids. The type of amino acid present after substitution is not particularly limited, but an antigen-binding molecule having an Fc region in which any one or more amino acids of 234th, 235th, and 297th amino acids are substituted with alanine is particularly preferable.
기타 바람직한 예로서, IgG1 항체의 Fc 영역을 구성하는 아미노산 중, EU 넘버링에 따라 특정되는 하기 중 어느 하나의 아미노산; 265위가 다른 아미노산에 의해 치환되어 있는 Fc 영역을 갖는 항원 결합 분자를 적합하게 들 수 있다. 치환 후에 존재하는 아미노산의 종류는 특별히 한정되지 않지만, 265위의 아미노산이 알라닌으로 치환되어 있는 Fc 영역을 갖는 항원 결합 분자가 특히 바람직하다.As another preferable example, among the amino acids constituting the Fc region of the IgG1 antibody, any one of the amino acids specified according to the EU numbering; An antigen binding molecule having an Fc region in which the amino acid at position 265 is substituted by another amino acid is suitably used. The kind of the amino acid present after the substitution is not particularly limited, but an antigen-binding molecule having an Fc region in which the amino acid at position 265 is substituted with alanine is particularly preferable.
다중특이성 항원 결합 분자Multispecific antigen binding molecule
본 발명의 「다중특이성 항원 결합 분자」의 바람직한 태양의 하나로서, 다중특이성 항체를 들 수 있다. 다중특이성 항체의 Fc 영역으로서, Fcγ 수용체에 대한 결합 활성이 저하되어 있는 Fc 영역을 이용하는 경우, 다중특이성 항체를 기원으로 하는 Fc 영역도 적절히 사용된다. 본 발명의 다중특이성 항체로서는, 특히 이중특이성 항체가 바람직하다. 여기에서, 이중특이성 항체란, 2개의 상이한 특이성을 갖는 항체이다. IgG형의 이중특이성 항체는 IgG 항체를 산생하는 하이브리도마 2종을 융합하는 것에 의해 생기는 hybrid hybridoma(quadroma)에 의해 분비시킬 수 있다(Milstein C et al. Nature (1983) 305, 537-540).As a preferred embodiment of the " multispecific antigen binding molecule " of the present invention, a multispecific antibody can be mentioned. When an Fc region in which the binding activity to the Fc? Receptor is decreased is used as the Fc region of the multispecific antibody, an Fc region originating from a multispecific antibody is suitably used. As the multispecific antibody of the present invention, a bispecific antibody is particularly preferable. Here, bispecific antibodies are antibodies with two different specificities. Bispecific antibodies of the IgG type can be secreted by a hybrid hybridoma (quadroma) produced by fusion of two hybridomas producing IgG antibodies (Milstein C et al. Nature (1983) 305, 537-540) .
또한, IgG형의 이중특이성 항체는 목적하는 2종의 IgG를 구성하는 L쇄 및 H쇄의 유전자, 합계 4종의 유전자를 세포에 도입하고 그들을 공발현시키는 것에 의해 분비된다. 그러나, 이들 방법으로 산생되는 IgG의 H쇄와 L쇄의 조합은 이론상 10가지나 된다. 10종류의 IgG로부터 목적하는 조합의 H쇄 L쇄로 이루어지는 IgG를 정제하는 것은 곤란하다. 또 목적하는 조합인 것의 분비량도 이론상 현저히 저하되기 때문에, 큰 배양 규모가 필요해져, 제조상의 비용은 더 증대된다.The bispecific antibody of the IgG type is secreted by introducing the genes of the L chain and the H chain constituting the two desired IgGs, a total of four genes into cells and co-expressing them. However, there are ten theoretical combinations of H and L chains of IgG produced by these methods. It is difficult to purify IgG consisting of the desired combination of H chain L chains from 10 kinds of IgG. In addition, since the secretion amount of a desired combination is significantly lowered theoretically, a large culture scale is required, and manufacturing costs are further increased.
그 때문에, 본 발명의 다중특이성 항원 결합 분자에는, 목적하는 조합의 H쇄간 및 L쇄 H쇄간의 회합을 촉진하기 위한 기술을 적용할 수 있다.Therefore, techniques for promoting the association between the desired H chain and L chain H chains can be applied to the multispecific antigen binding molecule of the present invention.
예를 들면, 다중특이성 항체의 회합화에는, 항체 H쇄의 제2의 정상 영역(CH2) 또는 H쇄의 제3의 정상 영역(CH3)의 계면에 전하적인 반발을 도입하여 목적으로 하지 않는 H쇄끼리의 회합을 억제하는 기술을 적용할 수 있다(WO2006/106905).For example, for the association of the multispecific antibody, charge repulsion is introduced at the interface of the second normal region (CH2) of the antibody H chain or the third normal region (CH3) of the H chain to form an H (WO2006 / 106905) can be applied to suppress the aggregation of chains.
CH2 또는 CH3의 계면에 전하적인 반발을 도입하여 의도하지 않는 H쇄끼리의 회합을 억제시키는 기술에 있어서, H쇄의 다른 정상 영역의 계면에서 접촉하는 아미노산 잔기로서는, 예를 들면 CH3 영역에 있어서의 EU 넘버링 356번째의 잔기, EU 넘버링 439번째의 잔기, EU 넘버링 357번째의 잔기, EU 넘버링 370번째의 잔기, EU 넘버링 399번째의 잔기, EU 넘버링 409번째의 잔기에 상대되는 영역을 들 수 있다.In the technique of inhibiting association of unintended H chains by introducing charge repulsion at the interface of CH2 or CH3, examples of amino acid residues that come into contact at the interface of the other normal region of the H chain include, for example, Region corresponding to the EU numbering 356th residue, EU numbering residue 439, EU numbering residue 357, EU numbering 370 residue, EU numbering residue 399, and EU numbering residue 409 residue.
보다 구체적으로는, 예를 들면, 2종의 H쇄 CH3 영역을 포함하는 항체에 있어서는, 제1의 H쇄 CH3 영역에 있어서의 이하의 (1)∼(3)에 나타내는 아미노산 잔기의 조로부터 선택되는 1조 내지 3조의 아미노산 잔기가 동종의 전하를 갖는 항체로 할 수 있다; (1) H쇄 CH3 영역에 포함되는 아미노산 잔기이고, EU 넘버링 356위 및 439위의 아미노산 잔기, (2) H쇄 CH3 영역에 포함되는 아미노산 잔기이고, EU 넘버링 357위 및 370위의 아미노산 잔기, (3) H쇄 CH3 영역에 포함되는 아미노산 잔기이고, EU 넘버링 399위 및 409위의 아미노산 잔기.More specifically, for example, in the case of an antibody comprising two H chain CH3 regions, it is preferable to select from the group of amino acid residues shown in the following (1) to (3) in the first H chain CH3 region The first to third sets of amino acid residues may be an antibody having a homogeneous charge; (1) the amino acid residues contained in the H chain CH3 region, the EU numbering 356 and 439 amino acid residues, (2) the H chain CH3 region, and the EU numbering 357 and 370 amino acid residues, (3) the amino acid residues contained in the H chain CH3 region, and the EU numbering 399 and 409 amino acid residues.
또, 상기 제1의 H쇄 CH3 영역과는 상이한 제2의 H쇄 CH3 영역에 있어서의 상기 (1)∼(3)에 나타내는 아미노산 잔기의 조로부터 선택되는 아미노산 잔기의 조이고, 상기 제1의 H쇄 CH3 영역에 있어서 동종의 전하를 갖는 상기 (1)∼(3)에 나타내는 아미노산 잔기의 조에 대응하는 1조 내지 3조의 아미노산 잔기가, 상기 제1의 H쇄 CH3 영역에 있어서의 대응하는 아미노산 잔기와는 반대의 전하를 갖는 항체로 할 수 있다.The amino acid residues in the second H chain CH3 region, which differs from the first H chain CH3 region, are a group of amino acid residues selected from the group of amino acid residues shown in the above (1) to (3) Chain amino acid residues corresponding to the groups of the amino acid residues shown in the above (1) to (3) having the same charge in the chain CH3 region are the same as the corresponding amino acid residues in the first H chain CH3 region Lt; RTI ID = 0.0 > of < / RTI >
상기 (1)∼(3)에 기재된 각각의 아미노산 잔기는 회합했을 때에 서로 접근해 있다. 당업자라면, 원하는 H쇄 CH3 영역 또는 H쇄 정상 영역에 대하여, 시판 중인 소프트웨어를 이용한 호몰로지 모델링 등에 의해, 상기 (1)∼(3)에 기재된 아미노산 잔기에 대응하는 부위를 발견할 수 있고, 적절히 해당 부위의 아미노산 잔기를 개변에 제공하는 것이 가능하다.Each of the amino acid residues described in the above (1) to (3) is close to each other when they are associated. Those skilled in the art can find a site corresponding to the amino acid residues described in the above (1) to (3) by homology modeling using commercially available software for the desired H chain CH3 region or H chain normal region, It is possible to provide the amino acid residues at the corresponding site in the modification.
상기 항체에 있어서, 「전하를 갖는 아미노산 잔기」는, 예를 들면, 이하의 (a) 또는 (b) 중 어느 하나의 군에 포함되는 아미노산 잔기로부터 선택되는 것이 바람직하다; In the above antibody, the "amino acid residue having a charge" is preferably selected from amino acid residues included in any one of the following groups (a) and (b); for example,
(a) 글루탐산(E), 아스파트산(D),(a) glutamic acid (E), aspartic acid (D),
(b) 라이신(K), 아르기닌(R), 히스티딘(H).(b) lysine (K), arginine (R), histidine (H).
상기 항체에 있어서, 「동종의 전하를 갖는다」란, 예를 들면, 2개 이상의 아미노산 잔기 모두가, 상기 (a) 또는 (b) 중 어느 하나의 군에 포함되는 아미노산 잔기를 갖는 것을 의미한다. 「반대의 전하를 갖는다」란, 예를 들면, 2개 이상의 아미노산 잔기 중 적어도 1개의 아미노산 잔기가, 상기 (a) 또는 (b) 중 어느 하나의 군에 포함되는 아미노산 잔기를 갖는 경우에, 나머지의 아미노산 잔기가 상이한 군에 포함되는 아미노산 잔기를 갖는 것을 의미한다.In the above antibody, "having a homogeneous charge" means that, for example, all two or more amino acid residues have amino acid residues contained in any one of the above-mentioned (a) or (b). Means that, for example, when at least one amino acid residue among two or more amino acid residues has an amino acid residue included in any one of the above-mentioned (a) or (b), the other ≪ / RTI > amino acid residues of the amino acid sequence of SEQ ID NO.
바람직한 태양에 있어서 상기 항체는, 제1의 H쇄 CH3 영역과 제2의 H쇄 CH3 영역이 다이설파이드 결합에 의해 가교되어 있어도 된다.In a preferred embodiment, the antibody may have the first H chain CH3 region and the second H chain CH3 region cross-linked by a disulfide bond.
본 발명에 있어서 개변에 제공되는 아미노산 잔기로서는, 전술한 항체의 가변 영역 또는 항체의 정상 영역의 아미노산 잔기에 한정되지 않는다. 당업자라면, 폴리펩타이드 변이체 또는 이종 다량체에 대하여, 시판 중인 소프트웨어를 이용한 호몰로지 모델링 등에 의해, 계면을 형성하는 아미노산 잔기를 발견할 수 있고, 회합을 제어하도록, 해당 부위의 아미노산 잔기를 개변에 제공하는 것이 가능하다.In the present invention, the amino acid residue provided in the modification is not limited to the variable region of the above-mentioned antibody or the amino acid residue of the normal region of the antibody. Those skilled in the art will be able to find amino acid residues that form an interface with polypeptide variants or heteromultimers by homology modeling using commercially available software or the like to provide amino acid residues at the site for modification It is possible to do.
또한, 본 발명의 다중특이성 항체의 회합화에는 또 다른 공지 기술을 이용할 수도 있다. 항체의 한쪽의 H쇄의 Fc 영역에 존재하는 아미노산 측쇄를 보다 큰 측쇄(knob; 돌기)로 치환하고, 다른 쪽의 H쇄가 상대하는 Fc 영역에 존재하는 아미노산 측쇄를 보다 작은 측쇄(hole; 공극)로 치환하는 것에 의해, 돌기가 공극 내에 배치될 수 있도록 함으로써, 효율적으로 Fc 영역을 갖는 상이한 아미노산을 갖는 폴리펩타이드끼리의 회합화를 일으킬 수 있다(WO1996/027011, Ridgway JB et al., Protein Engineering (1996) 9, 617-621, Merchant AM et al. Nature Biotechnology (1998) 16, 677-681, US20130336973).Further, another known technique may be used for the association of the multispecific antibody of the present invention. The amino acid side chain existing in the Fc region of one H chain of the antibody is replaced with a larger side chain (knob), and the amino acid side chain existing in the Fc region to which the other H chain is opposed is replaced with a smaller side chain ), It is possible to efficiently associate polypeptides having different amino acids having an Fc region with each other (WO996 / 027011, Ridgway JB et al., Protein Engineering (1996) 9, 617-621, Merchant AM et al., Nature Biotechnology (1998) 16, 677-681, US20130336973).
이에 더하여, 본 발명의 다중특이성 항체의 형성에는 또 다른 공지 기술을 이용할 수도 있다. 항체의 한쪽 H쇄의 CH3의 일부를 그 부분에 대응하는 IgA 유래의 서열로 하고, 다른 쪽 H쇄의 CH3의 상보적인 부분에 그 부분에 대응하는 IgA 유래의 서열을 도입한 strand-exchange engineered domain CH3을 이용함으로써, 상이한 서열을 갖는 폴리펩타이드의 회합화를 CH3의 상보적인 회합화에 의해 효율적으로 야기시킬 수 있다(Protein Engineering Design & Selection, 23; 195-202, 2010). 이 공지 기술을 사용하더라도 효율적으로 목적하는 다중특이성 항체를 형성시킬 수 있다.In addition, another known technique may be used for the formation of the multispecific antibodies of the present invention. A strand-exchange engineered domain in which a part of CH3 of one H chain of the antibody is made a sequence derived from IgA corresponding to that part and a complementary part of CH3 of the other H chain is introduced with IgA- By using CH3, association of polypeptides having different sequences can be efficiently caused by complementary association of CH3 (Protein Engineering Design & Selection, 23: 195-202, 2010). Even using this known technique, the desired multispecific antibody can be efficiently formed.
그 밖에도 다중특이성 항체의 형성에는, WO2011/028952나 WO2014/018572나 Nat Biotechnol. 2014 Feb;32(2):191-8.에 기재된 항체의 CH1과 CL의 회합화, VH, VL의 회합화를 이용한 항체 제작 기술, WO2008/119353이나 WO2011/131746에 기재된 따로따로 조제한 모노클로날 항체끼리를 사용하여 이중특이성 항체를 제작하는 기술(Fab Arm Exchange), WO2012/058768이나 WO2013/063702에 기재된 항체 중쇄의 CH3간의 회합을 제어하는 기술, WO2012/023053에 기재된 2종류의 경쇄와 1종류의 중쇄로 구성되는 이중특이성 항체를 제작하는 기술, Christoph 등(Nature Biotechnology Vol. 31, p753-758(2013))에 기재된 1본의 H쇄와 1본의 L쇄로 이루어지는 항체의 편쇄를 각각 발현하는 2개의 박테리아 세포주를 이용한 이중특이성 항체를 제작하는 기술 등을 이용할 수도 있다.In addition, for the formation of multispecific antibodies, see WO2011 / 028952 or WO2014 / 018572 or Nat Biotechnol. 2014 Feb; 32 (2): 191-8, antibody production technology using association of CH1 and CL, association of VH and VL, preparation of monoclonal antibodies prepared separately in WO2008 / 119353 and WO2011 / 131746 Techniques for producing bispecific antibodies using antibodies among themselves (Fab Arm Exchange), techniques for controlling the association of CH3 between antibody heavy chains described in WO2012 / 058768 and WO2013 / 063702, techniques for controlling the association of two light chains and one type , A technique for producing a bispecific antibody composed of a heavy chain of a single chain of H chain and an L chain described in Christoph et al. (Nature Biotechnology Vol. 31, p753-758 (2013) And techniques for producing bispecific antibodies using two bacterial cell lines.
또한, 효율적으로 목적하는 다중특이성 항체를 형성시킬 수 없는 경우이더라도, 산생된 항체 중으로부터 목적하는 다중특이성 항체를 분리, 정제하는 것에 의해서도, 본 발명의 다중특이성 항체를 얻는 것이 가능하다. 예를 들면, 2종류의 H쇄의 가변 영역에 아미노산 치환을 도입하여 등전점(pI)의 차를 부여함으로써, 2종류의 호모체와 목적하는 헤테로 항체를 이온 교환 크로마토그래피로 정제 가능하게 하는 방법이 보고되어 있다(WO2007114325). 또한, 헤테로체를 정제하는 방법으로서, 지금까지, 프로테인 A에 결합하는 마우스 IgG2a의 H쇄와 프로테인 A에 결합하지 않는 래트 IgG2b의 H쇄로 이루어지는 헤테로이량화 항체를 프로테인 A를 이용하여 정제하는 방법이 보고되어 있다(WO98050431, WO95033844). 또, IgG와 Protein A의 결합 부위인 EU 넘버링 435번째 및 436번째의 아미노산 잔기를, Tyr, His 등의 Protein A에 대한 결합력이 상이한 아미노산으로 치환한 H쇄를 이용하거나, 또는 참고 실시예 5에 기재된 방법에 따라 취득된 Protein A에 대한 결합력이 상이한 H쇄를 이용함으로써, 각 H쇄와 Protein A의 상호 작용을 변화시키고, Protein A 컬럼을 이용함으로써, 헤테로이량화 항체만을 효율적으로 정제할 수도 있다.In addition, even when the desired multispecific antibody can not efficiently be formed, it is also possible to obtain the multispecific antibody of the present invention by separating and purifying the desired multispecific antibody from the produced antibody. For example, a method of introducing amino acid substitution into the variable regions of two kinds of H chains to give a difference in isoelectric point (pI), thereby making it possible to purify the two kinds of homo and the desired heterologous antibody by ion exchange chromatography (WO2007114325). As a method for purifying the heterozygote, there has heretofore been reported a method of purifying a heterodimerizing antibody composed of the H chain of mouse IgG2a binding to protein A and the H chain of rat IgG2b not binding to protein A using protein A (WO98050431, WO95033844). Alternatively, the H chain in which amino acid residues 435 and 436 of EU numbering, which is a binding site of IgG and Protein A, are substituted with amino acids having different binding capacities to Protein A such as Tyr and His, It is also possible to efficiently purify only the heterodimer antibody by changing the interaction between each H chain and Protein A by using H chains having different binding capacities to Protein A obtained according to the described method and using Protein A column.
또한, 상이한 복수의 H쇄에 결합능을 부여할 수 있는 공통의 L쇄를 취득하여, 다중특이성 항체의 공통 L쇄로서 이용해도 된다. 이와 같은 공통 L쇄와 상이한 복수의 H쇄 유전자를 세포에 도입하는 것에 의해 IgG를 발현시킴으로써 효율이 좋은 다중특이성 IgG의 발현이 가능해진다(Nature Biotechnology (1998) 16, 677-681). 공통 H쇄를 선택할 때에, 임의의 상이한 H쇄에 대응하여 높은 결합능을 나타내는 공통 L쇄를 선택하는 방법도 이용할 수 있다(WO2004/065611).Further, a common L chain capable of binding to a plurality of different H chains may be obtained and used as a common L chain of the multispecific antibody. By introducing a plurality of H chain genes different from the common L chain into cells, it is possible to express multispecific IgG with high efficiency by expressing IgG (Nature Biotechnology (1998) 16, 677-681). When selecting a common H chain, a method of selecting a common L chain exhibiting high binding ability corresponding to arbitrary different H chains can also be used (WO2004 / 065611).
또한, 본 발명의 Fc 영역으로서, Fc 영역의 C 말단의 헤테로제니티가 개선된 Fc 영역이 적절히 사용될 수 있다. 보다 구체적으로는, IgG1, IgG2, IgG3 또는 IgG4를 기원으로 하는 Fc 영역을 구성하는 2개의 폴리펩타이드의 아미노산 서열 중 EU 넘버링에 따라 특정되는 446위의 글리신, 및 447위의 라이신이 결실된 Fc 영역이 제공된다.Further, as the Fc region of the present invention, an Fc region improved in the heterozygosity at the C-terminus of the Fc region may suitably be used. More specifically, the amino acid sequence of the two polypeptides constituting the Fc region originating from IgG1, IgG2, IgG3 or IgG4 is the 446th glycine specified according to the EU numbering and the Fc region in which the 447th lysine is deleted / RTI >
이들 기술을 복수, 예를 들면 2개 이상 조합하여 이용할 수도 있다. 또한, 이들 기술은 회합시키고 싶은 2개의 H쇄에 적절히 따로따로 적용시킬 수도 있다. 또, 이들 기술은 전술한 Fcγ 수용체에 대한 결합 활성이 저하되어 있는 Fc 영역에 조합하여 이용할 수도 있다. 한편, 본 발명의 항원 결합 분자는, 상기 개변이 가해진 것을 베이스로 해서, 동일한 아미노산 서열을 갖는 항원 결합 분자를 별도 제작한 것이어도 된다.A plurality of these techniques, for example, two or more of these techniques may be used in combination. These techniques may also be applied separately to the two H chains to be associated. These techniques may also be used in combination with the above-described Fc region in which the binding activity to the Fc? Receptor is reduced. On the other hand, the antigen-binding molecule of the present invention may be one obtained by separately preparing an antigen-binding molecule having the same amino acid sequence based on the modification.
본 발명에 따른 다중특이성 항원 결합 분자는 상기의,The multispecific antigen binding molecule according to the present invention may comprise any of the above-
(1) 글리피칸 3 결합 활성을 갖는 항체 가변 영역을 포함하는 도메인,(1) a domain comprising an antibody variable
(2) T 세포 수용체 복합체 결합 활성을 갖는 항체 가변 영역을 포함하는 도메인, 및(2) a domain comprising an antibody variable region having T cell receptor complex binding activity, and
(3) Fcγ 수용체에 대한 결합 활성이 저하되어 있는 Fc 영역을 포함하는 도메인(3) a domain containing an Fc region in which the binding activity to the Fc? Receptor is decreased
을 포함하는 것이면 되고, 그 구조는 한정되지 않는다.And the structure is not limited.
본 발명에 있어서, 상기의 각 도메인은 펩타이드 결합으로 직접 연결할 수 있다. 예를 들면, (1) 및 (2)의 항체 가변 영역을 포함하는 도메인으로서 F(ab')2를 이용하고, (3) Fcγ 수용체에 대한 결합 활성이 저하되어 있는 Fc 영역을 포함하는 도메인으로서 이들 Fc 영역을 이용한 경우에 (1) 및 (2)에 기재된 항체 가변 영역을 포함하는 도메인과 (3)에 기재된 Fc 영역을 포함하는 도메인을 펩타이드 결합으로 연결했을 때에는, 연결된 폴리펩타이드는 항체의 구조를 형성한다. 그와 같은 항체를 제작하기 위해서는 전술한 하이브리도마의 배양액으로부터 정제하는 것 외, 당해 항체를 구성하는 폴리펩타이드를 코딩하는 폴리뉴클레오타이드가 안정적으로 유지된 원하는 숙주 세포의 배양액으로부터 당해 항체를 정제할 수도 있다.In the present invention, each of the above domains may be directly linked to a peptide bond. For example, F (ab ') 2 is used as the domain containing the antibody variable regions of (1) and (2), and (3) a domain containing the Fc region in which the binding activity to the Fc? When these Fc regions are used, when the domains including the antibody variable region described in (1) and (2) and the domain including the Fc region described in (3) are linked by a peptide bond, . In order to produce such an antibody, it is also possible to purify the antibody from the culture medium of the desired host cell in which the polynucleotide encoding the polypeptide constituting the antibody is stably maintained, in addition to purification from the above-mentioned hybridoma culture have.
본 발명의 바람직한 글리피칸 3 결합 활성을 갖는 항체 가변 영역에 포함되는 항체 H쇄 가변 영역으로서는, 예를 들면, 표 1에 기재된 항체 H쇄 가변 영역, 또는 CDR1, CDR2 및 CDR3의 아미노산 서열이 표 1에 기재된 항체 H쇄 가변 영역이 갖는 CDR1, CDR2 및 CDR3의 아미노산 서열과 동일한 CDR 서열을 갖는 항체 H쇄 가변 영역, 또는 당해 가변 영역과 기능적으로 동등한 항체 H쇄 가변 영역을 들 수 있다.Examples of the antibody H chain variable region included in the antibody variable region having the
또한, 본 발명의 바람직한 T 세포 수용체 복합체 결합 활성을 갖는 항체 가변 영역으로서는, T 세포 수용체에 대한 결합 활성을 갖는 항체 가변 영역을 들 수 있다. T 세포 수용체 중에서도 CD3이 바람직하고, 특히 CD3 ε이 바람직하다. 그와 같은 항체 가변 영역에 포함되는 항체 H쇄 가변 영역으로서는, 예를 들면, 표 2에 기재된 항체 H쇄 가변 영역, 또는 CDR1, CDR2 및 CDR3의 아미노산 서열이 표 2에 기재된 항체 H쇄 가변 영역이 갖는 CDR1, CDR2 및 CDR3의 아미노산 서열과 동일한 CDR 서열을 갖는 항체 H쇄 가변 영역, 또는 당해 가변 영역과 기능적으로 동등한 항체 H쇄 가변 영역을 들 수 있다.The antibody variable region having a preferable T cell receptor complex binding activity of the present invention includes an antibody variable region having a binding activity to a T cell receptor. Of the T cell receptors, CD3 is preferred, and CD3? Is particularly preferred. Examples of the antibody H chain variable region contained in such antibody variable region include the antibody H chain variable region described in Table 2 or the antibody H chain variable region described in Table 2 with the amino acid sequence of CDR1, CDR2 and CDR3 An antibody H chain variable region having the same CDR sequence as the amino acid sequence of CDR1, CDR2 and CDR3, or an antibody H chain variable region functionally equivalent to the variable region.
항체 H쇄 아미노산 서열을 구성하는 아미노산 잔기의 CDR 영역과, kabat 넘버링의 관계에 대해서는 도 13에 예시된다.The relationship between the CDR region of the amino acid residues constituting the antibody H chain amino acid sequence and the kabat numbering is illustrated in FIG.
본 발명의 글리피칸 3 결합 활성을 갖는 항체 가변 영역과 T 세포 수용체 복합체 결합 활성을 갖는 항체 가변 영역에 포함되는 항체 L쇄 가변 영역은, 글리피칸 3에 대해서 결합 활성을 갖는 H쇄와 T 세포 수용체 복합체에 대해서 결합 활성을 갖는 H쇄의 양쪽에 결합능을 부여할 수 있는 공통의 L쇄를 취득하고, 이것을 다중특이성 항원 결합 분자의 공통 L쇄 가변 영역으로서 이용하는 것이 바람직하다.The antibody L chain variable region included in the antibody variable region having the
본 발명에서 이용되는 공통의 L쇄 가변 영역으로서는, 표 3에 기재된 L쇄 가변 영역, 또는 CDR1, CDR2 및 CDR3의 아미노산 서열이 표 3에 기재된 항체 L쇄 가변 영역이 갖는 CDR1, CDR2 및 CDR3의 아미노산 서열과 동일한 CDR 서열을 갖는 항체 L쇄 가변 영역, 또는 당해 가변 영역과 기능적으로 동등한 항체 L 가변 영역을 들 수 있다.As the common L chain variable region used in the present invention, the L chain variable region described in Table 3, or the amino acid sequence of CDR1, CDR2 and CDR3 of CDR1, CDR2 and CDR3 of the antibody L chain variable region described in Table 3 An antibody L chain variable region having the same CDR sequence as the sequence, or an antibody L variable region functionally equivalent to the variable region.
항체 L쇄 아미노산 서열을 구성하는 아미노산 잔기의 CDR 영역과, kabat 넘버링의 관계에 대해서는 도 14에 예시된다.The relationship between the CDR region of the amino acid residues constituting the antibody L chain amino acid sequence and the kabat numbering is illustrated in Fig.
여기에서, 본 발명에 있어서 「기능적으로 동등」이란, 항원에 대한 결합 친화성이 동등하거나, 또는 다중특이성 항원 결합 분자로서 이용된 경우에, 글리피칸 3이 발현하고 있는 세포 또는 당해 세포를 포함하는 조직에 대한 세포상해 활성이 동등한 것을 의미한다. 결합 친화성 및 세포상해 활성은 본 명세서의 기재에 기초하여 측정할 수 있다. 세포상해 활성을 측정하는 세포는, GPC3이 발현하고 있는 원하는 세포 또는 당해 세포를 포함하는 원하는 조직을 이용해도 되지만, 예를 들면 GPC3을 발현하는 인간 암세포주인 PC-10 또는 NCI-H446을 이용할 수 있다. 또한 항체 정상 영역에 있어서는, Fcγ 수용체에 대한 결합 활성의 저하가 동등한 것이어도 된다.Herein, " functionally equivalent " in the present invention means a cell in which glypicane 3 is expressed or a cell in which the
예를 들면, 본원 명세서에 기재된 항체 H쇄 가변 영역(근원이 되는 H쇄 가변 영역)과 기능적으로 동등한 항체 H쇄 가변 영역은, 그 근원이 되는 H쇄의 쌍으로 해서 본원 명세서에 기재되어 있는 항체 L쇄 가변 영역과 조합한 경우, 결합 친화성이 동등하거나, 또는 다중특이성 항원 결합 분자로서 이용된 경우에, 글리피칸 3이 발현하고 있는 세포 또는 당해 세포를 포함하는 조직에 대한 세포상해 활성이 동등한 것을 의미한다. 또한 본원 명세서에 기재된 항체 L쇄 가변 영역(근원이 되는 L쇄 가변 영역)과 기능적으로 동등한 항체 L쇄 가변 영역은, 그 근원이 되는 L쇄의 쌍으로 해서 본원 명세서에 기재되어 있는 항체 H쇄 가변 영역과 조합한 경우, 결합 친화성이 동등하거나, 또는 다중특이성 항원 결합 분자로서 이용된 경우에, 글리피칸 3이 발현하고 있는 세포 또는 당해 세포를 포함하는 조직에 대한 세포상해 활성이 동등한 것을 의미한다.For example, the antibody H chain variable region functionally equivalent to the antibody H chain variable region (the originating H chain variable region) described in the present specification is a pair of H chains as the origin thereof, L chain variable region, when the binding affinity is equivalent or when used as a multispecific antigen binding molecule, the cytotoxic activity of the
또한, 「동등」이란, 반드시 동일한 정도의 활성일 필요가 없고, 활성이 증강되어 있어도 된다. 구체적으로는, 항원에 대한 결합 친화성의 경우는, 대조가 되는 항체 가변 영역의 결합 친화성(친KD값)과 비교한 값(KD값/친KD값)이 1.5 이하인 경우를 들 수 있다. KD값/친KD값의 값은, 바람직하게는 1.3 이하이고, 보다 바람직하게는 1.2 이하, 1.1 이하, 1.0 이하, 0.9 이하, 0.8 이하, 0.7 이하, 0.6 이하, 또는 0.5 이하이다. 하한에 제한은 없지만, 예를 들면 10-1, 10-2, 10-3, 10-4, 10-5, 또는 10-6이어도 된다. 구체적으로는, 본 발명에 있어서 KD값/친KD값의 값은 10-6∼1.5x10-0이 바람직하고, 보다 바람직하게는 10-6∼10-1, 보다 바람직하게는 10-6∼10-2, 보다 바람직하게는 10-6∼10-3이다. 세포상해 활성의 경우는, 대조가 되는 다중특이성 항원 결합 분자의 세포 증식 억제율(친세포 증식 억제율)과 비교한 값(세포 증식 억제율/친세포 증식 억제율)이 0.7 이상인 경우를 들 수 있다. 첨가하는 다중특이성 항원 결합 분자의 농도는 적절히 결정되지만, 바람직하게는, 예를 들면 0.01nM, 0.05nM, 0.1nM, 0.5nM, 또는 1nM, 바람직하게는 0.05nM 또는 0.1nM에서 측정한다. 세포 증식 억제율/친세포 증식 억제율의 값은, 바람직하게는 0.8 이상이고, 보다 바람직하게는 0.9 이상, 1.0 이상, 1.2 이상, 1.5 이상, 2 이상, 3 이상, 5 이상, 10 이상, 또는 20 이상이다. 상한에 제한은 없지만, 예를 들면 10, 102, 103, 104, 105, 또는 106이어도 된다.The term " equivalent " does not necessarily mean the same degree of activity, and the activity may be enhanced. Specifically, in the case of the binding affinity for the antigen, the case where the value (KD value / intact KD value) compared with the binding affinity (the kinetically kd value) of the antibody variable region to be compared is 1.5 or less can be mentioned. The value of the KD value / the kinetics value is preferably 1.3 or less, more preferably 1.2 or less, 1.1 or less, 1.0 or less, 0.9 or less, 0.8 or less, 0.7 or less, 0.6 or less or 0.5 or less. The lower limit is not limited, but may be, for example, 10 -1 , 10 -2 , 10 -3 , 10 -4 , 10 -5 , or 10 -6 . Specifically, in the present invention, the value of the KD value / kinetics value is preferably 10 -6 to 1.5 × 10 -0 , more preferably 10 -6 to 10 -1 , more preferably 10 -6 to 10 -2 , and more preferably from 10 -6 to 10 -3 . In the case of the cytotoxic activity, there is a case in which the value (cell proliferation inhibition rate / proliferation rate of proliferation of proliferating cells) of the multispecific antigen binding molecule as compared with the cell proliferation inhibition rate (proliferation rate of proliferating cells) is 0.7 or more. The concentration of the multispecific antigen binding molecule to be added is suitably determined, but is preferably determined at, for example, 0.01 nM, 0.05 nM, 0.1 nM, 0.5 nM, or 1 nM, preferably 0.05 nM or 0.1 nM. The value of the cell proliferation inhibiting rate / proliferation rate of proliferating cells is preferably at least 0.8, more preferably at least 0.9, at least 1.0, at least 1.2, at least 1.5, at least 2, at least 3, at least 5, at least 10, to be. The upper limit is not limited, but may be, for example, 10, 10 2 , 10 3 , 10 4 , 10 5 , or 10 6 .
또한 세포상해 활성의 경우는, 원래의 다중특이성 항원 결합 분자의 세포에 대한 50% 증식 억제 농도(친세포 50% 증식 억제 농도)와 비교한 값(세포 50% 증식 억제 농도/친세포 50% 증식 억제 농도)이 1.5 이하인 경우를 들 수 있다. 50% 증식 억제 농도란, 다중특이성 항원 결합 분자를 첨가하지 않는 경우에 비해, 세포 증식률을 반감시키는 데 필요한 다중특이성 항원 결합 분자의 농도이다. 「세포 50% 증식 억제 농도/친세포 50% 증식 억제 농도」의 값은, 바람직하게는 1.3 이하이고, 보다 바람직하게는 1.2 이하, 1.1 이하, 1.0 이하, 0.9 이하, 0.8 이하, 0.7 이하, 0.6 이하, 또는 0.5 이하이다. 하한에 제한은 없지만, 예를 들면 10-1, 10-2, 10-3, 10-4, 10-5, 또는 10-6이어도 된다. 구체적으로는 10-6∼1.5x10-0이 바람직하고, 보다 바람직하게는 10-6∼10-1, 보다 바람직하게는 10-6∼10-2, 보다 바람직하게는 10-6∼10-3이다.In addition, in the case of cytotoxic activity, a value of 50% proliferation inhibitory concentration (50% proliferation inhibitory concentration of cells) (50% proliferation inhibitory concentration of cells / 50% proliferation of proliferative cells) Inhibitory concentration) is 1.5 or less. The 50% proliferation inhibitory concentration is the concentration of the multispecific antigen binding molecule required to halve the cell proliferation rate compared to the case where the multispecific antigen binding molecule is not added. The value of "
또한, GPC3 결합 활성을 갖는 항체 가변 영역을 포함하는 도메인에 대해서는, GPC3(예를 들면 인간 GPC3)에 대한 KD값은, 예를 들면 5x10-9M 이하이면 되고, 바람직하게는 4x10-9M 이하, 예를 들면 3x10-9M 이하, 2x10-9M 이하, 1x10-9M 이하, 8x10-10M 이하, 5x10-10M 이하, 4x10-10M 이하, 3x10-10M 이하, 2x10-10M 이하, 1x10-10M 이하, 8x10-11M 이하, 5x10-11M 이하, 4x10-11M 이하, 3x10-11M 이하, 2x10-11M 이하, 1x10-11M 이하, 8x10-12M 이하, 5x10-12M 이하, 4x10-12M 이하, 3x10-12M 이하, 2x10-12M 이하, 1x10-12M 이하, 8x10-13M 이하, 5x10-13M 이하, 4x10-13M 이하, 3x10-13M 이하, 2x10-13M 이하, 또는 1x10-13M 이하여도 된다.In addition, as for the domain containing the antibody variable region having GPC3 binding activity, KD values for the GPC3 (human GPC3 for example), for example, when 5x10 -9 M or less and, preferably, less than 4x10 -9 M , for example, less than 3x10 -9 M, 2x10 -9 M or less, 1x10 -9 M or less, 8x10 -10 M or less, 5x10 -10 M or less, 4x10 -10 M or less, 3x10 -10 M or less, 2x10 -10 M or less, 1x10 -10 M or less, 8x10 -11 M or less, 5x10 -11 M or less, 4x10 -11 M or less, 3x10 -11 M or less, 2x10 -11 M or less, 1x10 -11 M or less, 8x10 -12 M or less, less than 5x10 -12 M, 4x10 -12 M or less, 3x10 -12 M or less, 2x10 -12 M or less, 1x10 -12 M or less, 8x10 -13 M or less, 5x10 -13 M or less, 4x10 -13 M or less, 3x10 - 13 M or less, or may be less than 2x10 -13 M, 1x10 -13 M or less.
또한, T 세포 수용체 복합체 결합 활성을 갖는 항체 가변 영역을 포함하는 도메인에 대해서는, 인간 T 세포 수용체 복합체, 예를 들면 인간 T 세포 수용체, 보다 구체적으로는 예를 들면 인간 CD3 ε쇄에 대한 KD값은, 예를 들면 2x10-7M 이하이면 되고, 바람직하게는 1.5x10-7M 이하, 예를 들면 1.4x10-7M 이하, 1.3x10-7M 이하, 1.2x10-7M 이하, 1x10-7M 이하, 3x10-8M 이하, 2x10-8M 이하, 1x10-8M 이하, 8x10-9M 이하, 5x10-9M 이하, 4x10-9M 이하, 3x10-9M 이하, 2x10-9M 이하, 1x10-9M 이하, 8x10-10M 이하, 5x10-10M 이하, 4x10-10M 이하, 3x10-10M 이하, 2x10-10M 이하, 1x10-10M 이하, 8x10-11M 이하, 5x10-11M 이하, 4x10-11M 이하, 3x10-11M 이하, 2x10-11M 이하, 1x10-11M 이하, 8x10-12M 이하, 5x10-12M 이하, 4x10-12M 이하, 3x10-12M 이하, 2x10-12M 이하, 또는 1x10-12M 이하이다.In addition, for a domain containing an antibody variable region having T cell receptor complex binding activity, the KD value for a human T cell receptor complex, such as a human T cell receptor, more specifically, for example, human CD3? , e.g., if 2x10 -7 M or less, preferably 1.5x10 -7 M or less, for example, 1.4x10 -7 M or less, 1.3x10 -7 M or less, 1.2x10 -7 M or less, 1x10 -7 M or less, 3x10 -8 M or less, 2x10 -8 M or less, 1x10 -8 M or less, 8x10 -9 M or less, 5x10 -9 M or less, 4x10 -9 M or less, 3x10 -9 M or less, 2x10 -9 M or less, 1x10 -9 M or less, 8x10 -10 M or less, 5x10 -10 M or less, 4x10 -10 M or less, 3x10 -10 M or less, 2x10 -10 M or less, 1x10 -10 M or less, 8x10 -11 M or less, 5x10 - 11 M or less, 4x10 -11 M or less, 3x10 -11 M or less, 2x10 -11 M or less, 1x10 -11 M or less, 8x10 -12 M or less, 5x10 -12 M or less, 4x10 -12 M or less, 3x10 -12 M or less, 2x10 -12 M, alternatively no more than 1x10 -12 M or less.
본 발명의 다중특이성 항원 결합 분자는, 바람직하게는 인간 GPC3 및 인간 T 세포 수용체 복합체(예를 들면 인간 CD3 ε쇄)에 대한 KD값은, 각각 5x10-9M 이하 및 2x10-7M 이하이고, 보다 바람직하게는 각각 1x10-9M 이하 및 5x10-8M 이하이다.The multispecific antigen binding molecules of the present invention preferably have KD values of 5 x 10 -9 M or less and 2 x 10 -7 M or less, respectively, for the human GPC3 and human T cell receptor complexes (for example, human CD3? Chain) More preferably 1x10 < -9 > M or less and 5x10 < -8 > M or less.
본 발명에 있어서 「기능적으로 동등」한 항체 가변 영역이란, 전술한 조건을 만족시키는 항체 H쇄 가변 영역 및/또는 항체 L쇄 가변 영역이면 특별히 한정되지 않는다. 그와 같은 항체 가변 영역으로서, 예를 들면, 전술한 표 1∼3에 기재된 가변 영역의 아미노산 서열에 1 또는 복수의 아미노산(예를 들면 1, 2, 3, 4, 5 또는 10 아미노산)이 치환, 결실, 부가 및/또는 삽입되어 있어도 된다. 아미노산 서열에 있어서, 1 또는 복수의 아미노산이 치환, 결실, 부가 및/또는 삽입하기 위한, 당업자에게 잘 알려진 방법으로서는, 단백질에 변이를 도입하는 방법이 알려져 있다. 예를 들면, 당업자라면, 부위 특이적 변이 유발법(Hashimoto-Gotoh, T, Mizuno, T, Ogasahara, Y, and Nakagawa, M. (1995) An oligodeoxyribonucleotide-directed dual amber method for site-directed mutagenesis. Gene 152, 271-275, Zoller, MJ, and Smith, M. (1983) Oligonucleotide-directed mutagenesis of DNA fragments cloned into M13 vectors. Methods Enzymol. 100, 468-500, Kramer, W, Drutsa, V, Jansen, HW, Kramer, B, Pflugfelder, M, and Fritz, HJ(1984) The gapped duplex DNA approach to oligonucleotide-directed mutation construction. Nucleic Acids Res. 12, 9441-9456, Kramer W, and Fritz HJ(1987) Oligonucleotide-directed construction of mutations via gapped duplex DNA Methods. Enzymol. 154, 350-367, Kunkel, TA(1985) Rapid and efficient site-specific mutagenesis without phenotypic selection. Proc Natl Acad Sci USA. 82, 488-492) 등을 이용하여 아미노산 서열에 적절히 변이를 도입하는 것에 의해, 전술한 기능을 갖는 항체 가변 영역과 기능적으로 동등한 가변 영역을 조제할 수 있다.The antibody variable region "functionally equivalent" in the present invention is not particularly limited as long as it is an antibody H chain variable region and / or antibody L chain variable region which satisfies the above-mentioned conditions. As such antibody variable regions, for example, one or more amino acids (e.g., 1, 2, 3, 4, 5 or 10 amino acids) are substituted in the amino acid sequence of the variable region described in Tables 1 to 3 above , Deleted, added and / or inserted. As a method well known to those skilled in the art, a method for introducing a mutation into a protein is known for substitution, deletion, addition and / or insertion of one or more amino acids in the amino acid sequence. For example, those skilled in the art will appreciate that site-directed mutagenesis (Hashimoto-Gotoh, T, Mizuno, T, Ogasahara, Y, and Nakagawa, M. (1995) An oligodeoxyribonucleotide- directed dual amber method for site- (1983) Oligonucleotide-directed mutagenesis of DNA fragments cloned into M13 vectors. Methods Enzymol. 100, 468-500, Kramer, W, Drutsa, V, Jansen, HW , Kramer W, and Fritz HJ (1987) Oligonucleotide-directed mutagenesis, Nucleic Acids Res. 12, 9441-9456, Kramer, B, Pflugfelder, (1985) Rapid and efficient site-specific mutagenesis without phenotypic selection, Proc Natl
아미노산 잔기를 개변하는 경우에는, 아미노산 측쇄의 성질이 보존되어 있는 다른 아미노산으로 변이되는 것이 바람직하다. 예를 들면 아미노산 측쇄의 성질로서는, 소수성 아미노산(A, I, L, M, F, P, W, Y, V), 친수성 아미노산(R, D, N, C, E, Q, G, H, K, S, T), 지방족 측쇄를 갖는 아미노산(G, A, V, L, I, P), 수산기 함유 측쇄를 갖는 아미노산(S, T, Y), 황 원자 함유 측쇄를 갖는 아미노산(C, M), 카복실산 및 아마이드 함유 측쇄를 갖는 아미노산(D, N, E, Q), 염기 함유 측쇄를 갖는 아미노산(R, K, H), 및 방향족 함유 측쇄를 갖는 아미노산(H, F, Y, W)을 들 수 있다(괄호 내는 모두 아미노산의 1문자 표기를 나타낸다). 이들 각 그룹 내의 아미노산의 치환을 보존적 치환이라고 칭한다. 어떤 아미노산 서열에 대한 1 또는 복수개의 아미노산 잔기의 결실, 부가 및/또는 다른 아미노산에 의한 치환에 의해 수식된 아미노산 서열을 갖는 폴리펩타이드가 그의 생물학적 활성을 유지한다는 것은 이미 알려져 있다(Mark, D. F. et al., Proc.Natl.Acad.Sci.USA (1984)81:5662-6; Zoller, M. J. and Smith, M., Nucleic Acids Res. (1982)10:6487-500; Wang, A. et al., Science(1984)224:1431-3; Dalbadie-McFarland, G. et al., Proc.Natl.Acad.Sci.USA (1982)79:6409-13). 이와 같은 아미노산 개변을 포함하는 본 발명의 가변 영역은, 개변 전의 가변 영역의 CDR 서열, FR 서열 또는 가변 영역 전체의 아미노산 서열과 적어도 70%, 보다 바람직하게는 적어도 75%, 보다 바람직하게는 적어도 80%, 더 바람직하게는 적어도 85%, 보다 더 바람직하게는 적어도 90%, 그리고 가장 바람직하게는 적어도 95%의 아미노산 서열의 동일성을 갖는다. 본 명세서에 있어서 서열의 동일성은, 서열 동일성이 최대가 되도록 필요에 따라 서열을 정렬화하고, 적절히 갭을 도입한 후, 근원이 된 H쇄 가변 영역 또는 L쇄 가변 영역의 아미노산 서열의 잔기와 동일한 잔기의 비율로서 정의된다. 아미노산 서열의 동일성은 후술하는 방법에 의해 결정할 수 있다.When the amino acid residue is changed, it is preferable that the amino acid residue is changed to another amino acid in which the property of the amino acid side chain is conserved. For example, hydrophobic amino acids (A, I, L, M, F, P, W, Y and V), hydrophilic amino acids (R, D, N, C, E, Q, Amino acid (S, T, Y) having a hydroxyl group-containing side chain, an amino acid having a sulfur atom-containing side chain (C, (H, F, Y, W) containing an amino acid (D, N, E, Q) having a carboxylic acid and an amide containing side chain, an amino acid ) (All parentheses indicate one letter of amino acid). The substitution of amino acids in each of these groups is referred to as conservative substitution. It is already known that a polypeptide having an amino acid sequence modified by deletion, addition and / or substitution with another amino acid of one or more amino acid residues for any amino acid sequence retains its biological activity (Mark, DF et al (1982) 10: 6487-500; Wang, A. et al., Proc. Natl. Acad. Sci. USA (1984) 81: 5662-6; Zoller, MJ and Smith, M., Nucleic Acids Res. Science (1984) 224: 1431-3; Dalbadie-McFarland, G. et al., Proc. Natl. Acad. Sci. USA (1982) 79: 6409-13). The variable region of the present invention including such amino acid modification is at least 70%, more preferably at least 75%, more preferably at least 80%, more preferably at least 80%, more preferably at least 80% %, More preferably at least 85%, even more preferably at least 90%, and most preferably at least 95%. In the present specification, the identity of the sequence is determined by aligning the sequence as necessary so as to maximize the sequence identity, introducing the gap appropriately, and then identifying the residues of the amino acid sequence of the originating H chain variable region or L chain variable region Lt; / RTI > The identity of the amino acid sequence can be determined by the method described below.
또한, 「기능적으로 동등한 항체 가변 영역」에는, 예를 들면, 전술한 표 1∼3에 기재된 가변 영역의 아미노산 서열을 코딩하는 염기 서열로 이루어지는 핵산에 스트린전트 조건하에서 하이브리다이즈하는 핵산으로부터 얻는 것도 가능하다. 가변 영역의 아미노산 서열을 코딩하는 염기 서열로 이루어지는 핵산에 스트린전트 조건하에서 하이브리다이즈하는 핵산을 단리하기 위한, 스트린전트 하이브리다이제이션 조건으로서는, 6M 요소, 0.4% SDS, 0.5 x SSC, 37℃의 조건 또는 이것과 동등한 스트린전시의 하이브리다이제이션 조건을 예시할 수 있다. 보다 스트린전시가 높은 조건, 예를 들면, 6M 요소, 0.4% SDS, 0.1 x SSC, 42℃의 조건을 이용하면, 보다 상동성이 높은 핵산의 단리를 기대할 수 있다. 하이브리다이제이션 후의 세정 조건은, 예를 들면 0.5xSSC(1xSSC는 0.15M NaCL, 0.015M 시트르산 나트륨, pH 7.0), 및 0.1% SDS, 60℃에서의 세정, 보다 바람직하게는 0.2xSSC, 및 0.1% SDS, 60℃에서의 세정, 보다 바람직하게는 0.2xSSC, 및 0.1% SDS, 62℃에서의 세정, 보다 바람직하게는 0.2xSSC, 및 0.1% SDS, 65℃에서의 세정, 보다 바람직하게는 0.1xSSC, 및 0.1% SDS, 65℃에서의 세정이다. 단리된 핵산의 서열의 결정은, 후술하는 공지의 방법에 의해 행하는 것이 가능하다. 단리된 핵산의 상동성은, 염기 서열 전체에서, 적어도 50% 이상, 더 바람직하게는 70% 이상, 더 바람직하게는 90% 이상(예를 들면, 95%, 96%, 97%, 98%, 99% 이상)의 서열의 동일성을 갖는다.Further, the " functionally equivalent antibody variable region " includes, for example, a region derived from a nucleic acid hybridizing under stringent conditions to a nucleic acid comprising a nucleotide sequence encoding the amino acid sequence of the variable region described in Tables 1 to 3 It is also possible. In order to isolate the nucleic acid hybridizing under stringent conditions to the nucleic acid comprising the nucleotide sequence encoding the amino acid sequence of the variable region, the stringent hybridization conditions include 6M urea, 0.4% SDS, 0.5 x SSC, 37 Lt; 0 > C or a hybridization condition of a string equivalent to this can be exemplified. If more stringent conditions are used, for example, 6M urea, 0.4% SDS, 0.1 x SSC, and 42 ° C, isolation of nucleic acids with higher homology can be expected. The washing conditions after hybridization are, for example, 0.5xSSC (1xSSC is 0.15M NaCl, 0.015M sodium citrate, pH 7.0), 0.1% SDS, washing at 60 占 폚, more preferably 0.2xSSC, and 0.1% SDS at 60 캜, more preferably 0.2 x SSC and 0.1% SDS at 62 캜, more preferably 0.2 x SSC and 0.1% SDS at 65 캜, more preferably 0.1 x SSC , And 0.1% SDS at 65 캜. The sequence of the isolated nucleic acid can be determined by a known method described below. Homology of the isolated nucleic acid is at least 50%, more preferably at least 70%, more preferably at least 90% (e.g., 95%, 96%, 97%, 98%, 99% %) Of sequence identity.
상기 하이브리다이제이션 기술을 이용하는 방법 대신에, 가변 영역의 아미노산 서열을 코딩하는 염기 서열 정보를 토대로 합성한 프라이머를 이용하는 유전자 증폭법, 예를 들면, 폴리메라아제 연쇄 반응(PCR)법을 이용하여, 가변 영역의 아미노산 서열을 코딩하는 염기 서열로 이루어지는 핵산과 스트린전트 조건하에서 하이브리다이즈하는 핵산을 단리하는 것도 가능하다.Instead of the above-mentioned hybridization technique, a gene amplification method using a primer synthesized based on nucleotide sequence information encoding an amino acid sequence of a variable region, for example, a polymerase chain reaction (PCR) It is also possible to isolate a nucleic acid comprising a nucleotide sequence encoding an amino acid sequence of the variable region and a nucleic acid hybridizing under stringent conditions.
염기 서열 및 아미노산 서열의 동일성은, Karlin and Altschul에 의한 알고리즘 BLAST(Proc.Natl.Acad.Sci.USA(1993)90:5873-7)에 의해 결정할 수 있다. 이 알고리즘에 기초하여, BLASTN이나 BLASTX로 불리는 프로그램이 개발되어 있다(Altschul et al., J.Mol.Biol. (1990)215:403-10). BLAST에 기초하여 BLASTN에 의해 염기 서열을 해석하는 경우에는, 파라미터는 예를 들면 score = 100, wordlength = 12로 한다. 또한, BLAST에 기초하여 BLASTX에 의해 아미노산 서열을 해석하는 경우에는, 파라미터는 예를 들면 score = 50, wordlength = 3으로 한다. BLAST와 Gapped BLAST 프로그램을 이용하는 경우에는, 각 프로그램의 디폴트 파라미터를 이용한다. 이들 해석 방법의 구체적인 수법은 공지이다(NCBI(National Center for Biotechnology Information)의 BLAST(Basic Local Alignment Search Tool)의 웹사이트를 참조; http://www.ncbi.nlm.nih.gov).The identity of the nucleotide sequence and amino acid sequence can be determined by the algorithm BLAST (Proc. Natl. Acad. Sci. USA (1990) 90: 5873-7 by Karlin and Altschul). Based on this algorithm, a program called BLASTN or BLASTX has been developed (Altschul et al., J. Mol. Biol. (1990) 215: 403-10). When the base sequence is analyzed by BLASTN based on BLAST, the parameters are set to, for example, score = 100 and wordlength = 12. When the amino acid sequence is analyzed by BLASTX on the basis of BLAST, the parameter is set to, for example, score = 50 and wordlength = 3. When using BLAST and Gapped BLAST programs, default parameters of each program are used. Specific methods of these analysis methods are known (see the website of the BLAST (Basic Local Alignment Search Tool) of the National Center for Biotechnology Information (NCBI); http://www.ncbi.nlm.nih.gov).
본 발명의 다중특이성 항원 결합 분자에 포함되는 글리피칸 3 결합 활성을 갖는 항체 가변 영역과 T 세포 수용체 복합체 결합 활성을 갖는 항체 가변 영역의 조합은, 전술한 활성을 갖는 한 특별히 한정되지 않지만, 본 발명에 있어서는, 다중특이성 항원 결합 분자의 세포상해 활성이, 실시예 3에 기재된 이중특이성 항체 GPC3_ERY22_rCE115와 동등하거나 또는 그 이상인 항원 결합 분자가 바람직하다. 여기에서, 「동등」이란, 전술한 대로, 반드시 동일한 정도의 활성일 필요가 없고, 활성이 증강되어 있어도 된다. GPC3_ERY22_rCE115와 비교하여 동등하다란, GPC3_ERY22_rCE115의 세포 증식 억제율(세포 증식 억제율(GPC3_ERY22_rCE115))과 비교한 값(세포 증식 억제율/세포 증식 억제율(GPC3_ERY22_rCE115))이 0.7 이상, 바람직하게는 0.8 이상, 0.9 이상, 1.0 이상, 1.2 이상, 1.5 이상, 2 이상, 3 이상, 5 이상, 10 이상, 또는 20 이상인 경우를 들 수 있다. 상한에 제한은 없지만, 예를 들면 10, 102, 103, 104, 105, 또는 106이어도 된다. 첨가하는 다중특이성 항원 결합 분자의 농도는 적절히 결정되지만, 바람직하게는, 예를 들면 0.01nM, 0.05nM, 0.1nM, 0.5nM, 또는 1nM, 바람직하게는 0.05nM 또는 0.1nM에서 측정한다.The combination of the antibody variable region having the
또한, GPC3_ERY22_rCE115의 세포에 대한 50% 증식 억제 농도(50% 증식 억제 농도(GPC3_ERY22_rCE115))와 비교한 값(세포 50% 증식 억제 농도/세포 50% 증식 억제 농도(GPC3_ERY22_rCE115))이 1.5 이하인 경우를 들 수 있다. 「세포 50% 증식 억제 농도/세포 50% 증식 억제 농도(GPC3_ERY22_rCE115)」의 값은, 바람직하게는 1.3 이하이고, 보다 바람직하게는 1.2 이하, 1.1 이하, 1.0 이하, 0.9 이하, 0.8 이하, 0.7 이하, 0.6 이하, 또는 0.5 이하이다. 하한에 제한은 없지만, 예를 들면 10-1, 10-2, 10-3, 10-4, 10-5, 또는 10-6이어도 된다. 구체적으로는 10-6∼1.5x10-0이 바람직하고, 보다 바람직하게는 10-6∼10-1, 보다 바람직하게는 10-6∼10-2, 보다 바람직하게는 10-6∼10-3이다.In addition, when the value of GPC3_ERY22_rCE115 compared to the 50% proliferation inhibitory concentration (50% proliferation inhibitory concentration (GPC3_ERY22_rCE115)) of the cells (50% proliferation inhibitory concentration in cells / 50% proliferation inhibitory concentration in cells (GPC3_ERY22_rCE115)) is 1.5 or less . The value of "
또한, 인간 GPC3 및 인간 T 세포 수용체 복합체(예를 들면 인간 CD3 ε쇄)에 대한 바람직한 구체적인 KD값에 대해서도, 상기에 나타낸 대로이다. 또한, 세포는, GPC3이 발현하고 있는 원하는 세포 또는 당해 세포를 포함하는 원하는 조직을 이용해도 되지만, 예를 들면 GPC3을 발현하는 인간 암세포주인 PC-10 또는 NCI-H446을 이용할 수 있다.In addition, preferable specific KD values for human GPC3 and human T cell receptor complex (for example, human CD3? Chain) are as shown above. In addition, the cell may be a desired cell expressing GPC3 or a desired tissue including the cell. For example, PC-10 or NCI-H446, which is a human cancer cell host expressing GPC3, may be used.
그와 같은 글리피칸 3 결합 활성을 갖는 항체 가변 영역과 T 세포 수용체 복합체 결합 활성을 갖는 항체 가변 영역의 조합으로서는, 예를 들면, 표 4에 기재된 항체 H쇄 가변 영역의 조합, 또는 CDR1, CDR2 및 CDR3의 아미노산 서열이 표 4에 기재된 항체 H쇄 가변 영역이 갖는 CDR1, CDR2 및 CDR3의 아미노산 서열과 동일한 CDR 서열을 갖는 항체 H쇄 가변 영역의 조합, 또는 당해 가변 영역과 기능적으로 동등한 항체 H쇄 가변 영역의 조합을 들 수 있다. 여기에서 「기능적으로 동등」이란, 전술에 기재한 대로이다.Examples of combinations of the antibody variable region having the
그와 같은 글리피칸 3 결합 활성을 갖는 항체 가변 영역과 T 세포 수용체 복합체 결합 활성을 갖는 항체 가변 영역의 조합에 대해서, 바람직한 공통 L쇄로서는, 예를 들면, L0000, L0011, L0201, L0203, L0204, L0206, L0208, L0209, L0211, L0212, L0222, 또는 공통 L쇄의 CDR1, CDR2 및 CDR3의 아미노산 서열이, 이들 공통 L쇄의 CDR1, CDR2 및 CDR3의 아미노산 서열과 동일한 CDR 서열을 갖는 공통 L쇄를 들 수 있다. 구체적인 조합으로서는, 예를 들면, 표 5에 기재된 항체 H쇄 가변 영역 및 공통 L쇄의 조합, 또는 CDR1, CDR2 및 CDR3의 아미노산 서열이 표 5에 기재된 항체 가변 영역 및 공통 L쇄가 갖는 CDR1, CDR2 및 CDR3의 아미노산 서열과 동일한 CDR 서열을 갖는 항체 가변 영역의 조합, 또는 당해 가변 영역과 기능적으로 동등한 항체 H쇄 가변 영역 및 공통 L쇄의 조합을 들 수 있다. 여기에서 「기능적으로 동등」이란, 전술에 기재한 대로이다.Examples of the preferable common L chain for combination of antibody variable region having
본 발명의 다중특이성 항원 결합 분자에 포함되는 Fc 영역은, Fcγ 수용체에 대한 결합 활성이 저하되어 있는 Fc 영역인 한 특별히 제한되지 않지만, 본 발명의 바람직한 Fc 영역으로서는, 예를 들면, E22Hh의 Fc 영역 부분과 E22Hk의 Fc 영역 부분의 조합, E2702GsKsc의 Fc 영역 부분과 E2704sEpsc의 Fc 영역 부분의 조합, E2702sKsc의 Fc 영역 부분과 E2704sEpsc의 Fc 영역 부분의 조합을 들 수 있다.The Fc region contained in the multispecific antigen binding molecule of the present invention is not particularly limited as long as it is an Fc region in which the binding activity to the Fc? Receptor is degraded. Examples of the preferable Fc region of the present invention include Fc region of E22Hh A combination of the Fc region portion of E2702GsKsc and the Fc region portion of E2704sEscc, and a combination of the Fc region portion of E2702sKsc and the Fc region portion of E2704sEpsc.
본 발명의 바람직한 다중특이성 항원 결합 분자로서는, 글리피칸 3에 대한 결합 활성을 갖는 항체 가변 영역과, CD3 ε에 대한 결합 활성을 갖는 항체 가변 영역을 갖는 이중특이성 항체를 들 수 있다. 보다 바람직하게는, 이중특이성 항체인 GPC3_ERY22_rCE115와 비교하여, 세포상해 활성이 동등하거나 또는 그 이상인 것이 바람직하다. 그와 같은 이중특이성 항체로서는, 예를 들면, 표 13에 기재된 H쇄 및 L쇄를 갖는 이중특이성 항체, 또는 당해 항체가 결합하는 에피토프와 중복되는 에피토프에 결합하여, 전술한 Fcγ 수용체에 대한 결합 활성이 저하되어 있는 Fc 영역을 갖는 이중특이성 항체를 들 수 있다.Preferred multispecific antigen binding molecules of the present invention include an antibody variable region having a binding activity to
여기에서, 어떤 항체가 다른 항체와 중복되는 에피토프를 인식하는지 여부는, 양자의 에피토프에 대한 경합에 의해 확인할 수 있다. 항체간의 경합은, 경합 결합 어세이에 의해 평가할 수 있고, 그 수단으로서 효소 결합 면역 흡착 검정법(ELISA), 형광 에너지 전이 측정법(FRET)이나 형광 미량 측정 기술(FMAT(등록상표)) 등을 들 수 있다. 항원에 결합한 해당 항체의 양은, 중복되는 에피토프에 대한 결합에 대해서 경합하는 후보 경합 항체(피검 항체)의 결합능에 간접적으로 상관하고 있다. 즉, 중복되는 에피토프에 대한 피검 항체의 양이나 친화성이 커질수록, 해당 항체의 항원에 대한 결합량은 저하되고, 항원에 대한 피검 항체의 결합량은 증가한다. 구체적으로는, 항원에 대하여, 적당한 표지를 한 해당 항체와 평가해야 할 항체를 동시에 첨가하고, 표지를 이용해서 결합되어 있는 해당 항체를 검출한다. 항원에 결합한 해당 항체량은, 해당 항체를 미리 표지해 둠으로써, 용이하게 측정할 수 있다. 이 표지는 특별하게는 제한되지 않지만, 수법에 따른 표지 방법을 선택한다. 표지 방법은, 구체적으로는 형광 표지, 방사 표지, 효소 표지 등을 들 수 있다.Herein, whether an antibody recognizes an epitope overlapping another antibody can be confirmed by competition for both epitopes. Antibody competition can be evaluated by competitive binding assays. Examples include enzyme-linked immunosorbent assay (ELISA), fluorescence energy transfer assay (FRET) and fluorescence microscopy (FMAT (registered trademark)) have. The amount of the antibody bound to the antigen is indirectly related to the binding ability of the candidate competition antibody (antibody to be tested) contending for the binding to the overlapping epitope. That is, the greater the amount or affinity of the antibody to be detected for a duplicate epitope, the lower the binding amount of the antibody to the antigen and the greater the binding amount of the antibody to the antigen. Concretely, the appropriate antibody labeled with the appropriate antibody and the antibody to be evaluated are simultaneously added to the antigen, and the corresponding antibody bound thereto is detected using the label. The amount of the antibody bound to the antigen can be easily measured by marking the antibody in advance. This labeling is not particularly limited, but the labeling method according to the method is selected. Specific examples of the labeling method include fluorescent labels, radiolabels, and enzyme labels.
예를 들면, GPC3 또는 CD3 ε을 고상화한 비드에 형광 표지한 해당 항체와, 비표지된 해당 항체 또는 피검 항체를 동시에 첨가하고, 표지된 해당 항체를 형광 미량 측정 기술에 의해 검출한다.For example, a fluorescently labeled antibody and a non-labeled antibody or an antibody to be detected are simultaneously added to a bead in which GPC3 or CD3? Has been immobilized, and the labeled antibody is detected by fluorescence microsampling technique.
여기에서 말하는 「중복되는 에피토프에 결합하는 항체」란, 표지 해당 항체에 대해서, 비표지된 해당 항체의 결합에 의해 결합량을 50% 저하시키는 농도(IC50)에 대하여, 피검 항체가 비표지 해당 항체의 IC50의 통상 100배, 바람직하게는 80배, 더 바람직하게는 50배, 더 바람직하게는 30배, 보다 바람직하게는 10배 높은 농도로 적어도 50%, 표지 해당 항체의 결합량을 저하시킬 수 있는 항체이다.The term " antibody that binds to the overlapping epitope " as used herein refers to a concentration of the labeled antibody (IC 50 ) in which the binding amount is reduced by 50% by binding of the unlabeled antibody, It is preferable that the binding amount of the labeling antibody is lowered by at least 50% at a concentration which is usually 100 times, preferably 80 times, more preferably 50 times, more preferably 30 times, more preferably 10 times higher than the IC 50 of the antibody .
전술한 항체가 결합하는 에피토프와 중복되는 에피토프에 결합하는 항체의 항원 결합 부위를 갖는 다중특이성 항원 결합 분자는, 우수한 세포상해 활성을 얻는 것이 가능하다.A multispecific antigen-binding molecule having an antigen-binding site of an antibody that binds to an epitope that overlaps an epitope to which the antibody binds is capable of obtaining excellent cytotoxic activity.
본 발명의 다중특이성 항원 결합 분자는 상기 재조합 항체의 제조 방법과 동일한 수법에 의해 제작된다.The multispecific antigen binding molecule of the present invention is produced by the same method as the method for producing the recombinant antibody.
또한 본 발명은, 본 발명의 항원 결합 분자를 코딩하는 폴리뉴클레오타이드에 관한 것이다. 본 발명의 항원 결합 분자는, 임의의 발현 벡터에 편입시킬 수 있다. 발현 벡터로 적당한 숙주를 형질 전환하여, 항원 결합 분자의 발현 세포로 할 수 있다. 항원 결합 분자의 발현 세포를 배양하고, 배양 상청으로부터 발현 산물을 회수하면, 당해 폴리뉴클레오타이드에 의해 코딩되는 항원 결합 분자를 취득할 수 있다. 즉 본 발명은, 본 발명의 항원 결합 분자를 코딩하는 폴리뉴클레오타이드를 포함하는 벡터, 당해 벡터를 유지하는 세포, 및 당해 세포를 배양하여 배양 상청으로부터 항원 결합 분자를 회수하는 것을 포함하는 항원 결합 분자의 제조 방법에 관한 것이다. 이들은 예를 들면, 상기 재조합 항체와 마찬가지의 수법에 의해 얻을 수 있다.The invention also relates to polynucleotides encoding the antigen-binding molecules of the invention. The antigen binding molecule of the present invention can be incorporated into any expression vector. An appropriate host can be transformed with an expression vector to produce an antigen-binding molecule-expressing cell. When an expression cell of the antigen-binding molecule is cultured and the expression product is recovered from the culture supernatant, an antigen-binding molecule that is encoded by the polynucleotide can be obtained. That is, the present invention relates to a vector comprising a polynucleotide encoding the antigen-binding molecule of the present invention, a cell retaining the vector, and an antigen-binding molecule including the cell cultured and recovering the antigen-binding molecule from the culture supernatant And a manufacturing method thereof. These can be obtained, for example, by the same method as the recombinant antibody.
의약 조성물Medicinal composition
다른 관점에 있어서는, 본 발명은, (1) 글리피칸 3 결합 활성을 갖는 항체 가변 영역을 포함하는 도메인, (2) T 세포 수용체 복합체 결합 활성을 갖는 항체 가변 영역을 포함하는 도메인, 및 (3) Fcγ 수용체에 대한 결합 활성이 저하되어 있는 Fc 영역을 포함하는 도메인을 포함하는 다중특이성 항원 결합 분자를 유효 성분으로서 함유하는 의약 조성물을 제공한다. 또한, 본 발명은 당해 항원 결합 분자를 유효 성분으로서 함유하는 세포상해를 유도하는 의약 조성물 관한 것이다. 본 발명의 의약 조성물은, 당해 세포상해, 특히 T 세포 의존적 세포상해를 유도하여, 당해 활성이 예방 또는 치료에 필요한 질환을 이환(罹患)하고 있는 대상 또는 재발할 가능성이 있는 대상에 투여되는 것이 바람직하다.(2) a domain comprising an antibody variable region having T cell receptor complex binding activity; and (3) a domain comprising an antibody variable region having a glycopyran-3 binding activity. In another aspect, There is provided a pharmaceutical composition comprising, as an active ingredient, a multispecific antigen binding molecule comprising a domain containing an Fc region in which binding activity to an Fc? Receptor is decreased. The present invention also relates to a pharmaceutical composition for inducing cytotoxicity comprising the antigen-binding molecule as an active ingredient. The medicinal composition of the present invention is preferably administered to a subject suffering from a disease or a potential recurrence by inducing the cytotoxic effect, particularly T cell dependent cytotoxicity, of the activity to prevent or treat the activity Do.
또한, 본 발명에 있어서,Further, in the present invention,
(1) 글리피칸 3 결합 활성을 갖는 항체 가변 영역을 포함하는 도메인,(1) a domain comprising an antibody variable
(2) T 세포 수용체 복합체 결합 활성을 갖는 항체 가변 영역을 포함하는 도메인, 및(2) a domain comprising an antibody variable region having T cell receptor complex binding activity, and
(3) Fcγ 수용체에 대한 결합 활성이 저하되어 있는 Fc 영역을 포함하는 도메인을 포함하는 다중특이성 항원 결합 분자를 유효 성분으로서 함유하는, 세포상해 유도제 및 세포 증식 억제제는, 당해 항원 결합 분자를 대상에 투여하는 공정을 포함하는 세포상해를 유도하는 방법, 또는 세포상해 유도제 및 세포 증식 억제제의 제조에 있어서의 당해 항원 결합 분자의 사용이라고 표현할 수도 있다.(3) A cytotoxic inducer and a cell proliferation inhibitor, which comprises, as an active ingredient, a multispecific antigen-binding molecule comprising a domain containing an Fc region in which binding activity to an Fc? Receptor is decreased, A method of inducing cytotoxicity including a step of administering a cytotoxic agent, or a use of the antigen-binding molecule in the production of a cytotoxic inducer and a cell proliferation inhibitor.
본 발명에 있어서, 「(1) 글리피칸 3 결합 활성을 갖는 항체 가변 영역을 포함하는 도메인, (2) T 세포 수용체 복합체 결합 활성을 갖는 항체 가변 영역을 포함하는 도메인, 및 (3) Fcγ 수용체에 대한 결합 활성이 저하되어 있는 Fc 영역을 포함하는 도메인을 포함하는 다중특이성 항원 결합 분자를 유효 성분으로서 함유한다」란, 당해 항원 결합 분자를 주요한 활성 성분으로서 포함한다는 의미이며, 당해 항원 결합 분자의 함유율을 제한하는 것은 아니다.In the present invention, "(1) a domain comprising an antibody variable
또한, 필요에 따라 본 발명의 다중특이성 항원 결합 분자는 마이크로캡슐(하이드록시메틸셀룰로스, 젤라틴, 폴리[메틸메타크릴산] 등의 마이크로캡슐)에 봉입되어, 콜로이드 드럭 딜리버리 시스템(리포솜, 알부민 마이크로스피어, 마이크로에멀션, 나노입자 및 나노캡슐 등)이 될 수 있다("Remington's Pharmaceutical Science 16th edition", Oslo Ed. (1980) 등 참조). 또, 약제를 서방성의 약제로 하는 방법도 공지이며, 당해 방법은 본 발명의 다중특이성 항원 결합 분자에 적용될 수 있다(J.Biomed.Mater.Res. (1981) 15, 267-277, Chemtech. (1982) 12, 98-105, 미국 특허 제3773719호, 유럽 특허공개공보 EP58481호·EP133988호, Biopolymers (1983) 22, 547-556).In addition, if necessary, the multispecific antigen binding molecule of the present invention is encapsulated in microcapsules (microcapsules such as hydroxymethylcellulose, gelatin, and poly [methylmethacrylic acid]), and the colloid drug delivery system (liposomes, albumin microspheres , it may be a microemulsion, nanoparticle, and nanocapsule, etc.) refer to the like ( "Remington's Pharmaceutical Science 16 th edition", Oslo Ed. (1980)). Also, a method of using an agent as a sustained release agent is also known, and the method can be applied to the multispecific antigen binding molecule of the present invention (J. Biomed. Material Research (1981) 15, 267-277, Chemtech. 1982) 12, 98-105, United States Patent No. 3773719, European Patent Publication No. EP58481, EP133988, Biopolymers (1983) 22, 547-556).
본 발명의 의약 조성물, 또는 세포상해 유도제 및 세포 증식 억제제는, 경구, 비경구 투여 중 어느 하나에 의해 환자에게 투여할 수 있다. 바람직하게는 비경구 투여이다. 이러한 투여 방법으로서는 구체적으로는, 주사 투여, 경비 투여, 경폐 투여, 경피 투여 등을 들 수 있다. 주사 투여로서는, 예를 들면, 정맥내 주사, 근육내 주사, 복강내 주사, 피하 주사 등을 들 수 있다. 예를 들면 주사 투여에 의해 본 발명의 의약 조성물, 또는 세포상해 유도제 및 세포 증식 억제제를 전신 또는 국부적으로 투여할 수 있다. 또한, 환자의 연령, 증상에 따라 적절히 투여 방법을 선택할 수 있다. 투여량으로서는, 예를 들면, 1회의 투여에 대해 체중 1kg당 0.0001mg 내지 1000mg의 범위에서 투여량을 선택할 수 있다. 또는, 예를 들면, 환자당 0.001mg/body 내지 100000mg/body의 범위에서 투여량을 선택할 수 있다. 그러나, 본 발명의 의약 조성물, 또는 세포상해 유도제 및 세포 증식 억제제는 이들 투여량으로 제한되는 것은 아니다.The pharmaceutical composition, cytotoxic inducer and cell proliferation inhibitor of the present invention can be administered to a patient by either oral or parenteral administration. Preferably, it is parenterally administered. Specific examples of such administration methods include injection, intensive administration, transpulmonary administration, transdermal administration, and the like. Examples of injecting administration include intravenous injection, intramuscular injection, intraperitoneal injection, subcutaneous injection, and the like. For example, the pharmaceutical composition of the present invention, cytotoxic inducer and cell proliferation inhibitor can be administered systemically or locally by injection administration. In addition, the administration method can be appropriately selected according to the patient's age and symptoms. As the dose, for example, the dosage can be selected in the range of 0.0001 mg to 1000 mg per 1 kg of body weight per administration. Alternatively, for example, the dosage can be selected in the range of 0.001 mg / body to 100000 mg / body per patient. However, the pharmaceutical compositions, cytotoxic inducers and cell proliferation inhibitors of the present invention are not limited to these dosages.
본 발명의 의약 조성물, 또는 세포상해 유도제 및 세포 증식 억제제는, 통상적 방법에 따라 제제화할 수 있고(예를 들면, Remington's Pharmaceutical Science, latest edition, Mark Publishing Company, Easton, U.S.A), 의약적으로 허용되는 담체나 첨가물을 함께 포함하는 것이어도 된다. 예를 들면 계면활성제, 부형제, 착색료, 착향료, 보존료, 안정제, 완충제, 현탁제, 등장화제, 결합제, 붕괴제, 활택제, 유동성 촉진제, 교미제 등을 들 수 있다. 또 이들로 제한되지 않고, 기타 상용의 담체를 적절히 사용할 수 있다. 구체적으로는, 경질 무수 규산, 유당, 결정 셀룰로스, 만니톨, 전분, 카멜로스칼슘, 카멜로스나트륨, 하이드록시프로필셀룰로스, 하이드록시프로필메틸셀룰로스, 폴리바이닐아세탈다이에틸아미노아세테이트, 폴리바이닐피롤리돈, 젤라틴, 중쇄 지방산 트라이글리세라이드, 폴리옥시에틸렌 경화 피마자유 60, 백당, 카복시메틸셀룰로스, 콘스타치, 무기 염류 등을 담체로서 들 수 있다.The pharmaceutical composition of the present invention, or the cytotoxic inducer and the cell proliferation inhibitor may be formulated according to a conventional method (for example, Remington's Pharmaceutical Science, latest edition, Mark Publishing Company, Easton, USA) It may contain a carrier or an additive together. Examples thereof include surfactants, excipients, coloring agents, flavoring agents, preservatives, stabilizers, buffers, suspending agents, isotonizing agents, binders, disintegrating agents, lubricants, flow promoters and mating agents. The carrier is not limited to these, and other carriers can be suitably used. Concretely, it is possible to use, as a carrier, light anhydrous silicic acid, lactose, crystalline cellulose, mannitol, starch, cameloscalcium, camelose sodium, hydroxypropylcellulose, hydroxypropylmethylcellulose, polyvinyl acetaldiethylaminoacetate, polyvinylpyrrolidone, Gelatin, medium chain fatty acid triglyceride, polyoxyethylene
또한, 본 발명은, 글리피칸 3 항원을 발현하는 세포와 당해 항원에 결합하는 본 발명의 다중특이성 항원 결합 분자를 접촉시키는 것에 의해 당해 항원의 발현 세포, 또는 당해 발현 세포를 포함하는 종양 조직에 상해를 야기하는 방법, 또는 해당 세포 또는 종양 조직의 증식을 억제하는 방법을 제공한다. 당해 항원에 결합하는 다중특이성 항원 결합 분자는, 본 발명의 세포상해 유도제 및 세포 증식 억제제에 함유되는 당해 항원에 결합하는 본 발명의 항원 결합 분자로서 전술한 대로이다. 당해 항원에 결합하는 본 발명의 다중특이성 항원 결합 분자가 결합하는 세포는, 당해 항원이 발현하고 있는 세포이면 특별히 한정되지 않는다.In addition, the present invention relates to a method for producing an antigen-expressing cell, which comprises contacting a cell expressing a
본 발명에 있어서 「접촉」은, 예를 들면, 시험관 내에서 배양하고 있는 GPC3 항원 발현 세포의 배양액에, 당해 항원에 결합하는 본 발명의 다중특이성 항원 결합 분자를 첨가하는 것에 의해 행해진다. 이 경우에 있어서, 첨가되는 항원 결합 분자의 형상으로서는, 용액 또는 동결 건조 등에 의해 얻어지는 고체 등의 형상이 적절히 사용될 수 있다. 수용액으로서 첨가되는 경우에 있어서는 순수하게 본 발명의 다중특이성 항원 결합 분자만을 함유하는 수용액일 수 있고, 예를 들면 상기 기재의 계면활성제, 부형제, 착색료, 착향료, 보존료, 안정제, 완충제, 현탁제, 등장화제, 결합제, 붕괴제, 활택제, 유동성 촉진제, 교미제 등을 포함하는 용액일 수도 있다. 첨가하는 농도는 특별히 한정되지 않지만, 배양액 중의 최종 농도로서, 바람직하게는 1pg/ml 내지 1g/ml의 범위이고, 보다 바람직하게는 1ng/ml 내지 1mg/ml이며, 더 바람직하게는 1μg/ml 내지 1mg/ml가 적합하게 사용될 수 있다.In the present invention, " contact " is carried out, for example, by adding the multispecific antigen binding molecule of the present invention binding to the antigen to the culture medium of GPC3 antigen expressing cells cultured in vitro. In this case, as the shape of the antigen-binding molecule to be added, a shape of a solid or the like obtained by solution or freeze-drying can be suitably used. When it is added as an aqueous solution, it may be an aqueous solution containing only the multispecific antigen-binding molecules of the present invention. For example, the surfactant, excipient, coloring agent, flavoring agent, preservative, stabilizer, buffer, A binder, a disintegrant, a lubricant, a flowability promoter, a compatibilizer, and the like. The concentration to be added is not particularly limited, but is preferably in the range of 1 pg / ml to 1 g / ml, more preferably 1 ng / ml to 1 mg / ml, more preferably 1 μg / ml to 1 mg / 1 mg / ml can be suitably used.
또한 본 발명에 있어서 「접촉」은 나아가, 다른 태양에서는, GPC3 항원의 발현 세포를 체내에 이식한 비인간 동물이나, 내재적으로 당해 항원을 발현하는 세포를 갖는 동물에 투여하는 것에 의해서도 행해진다. 투여 방법은 경구, 비경구 투여 중 어느 하나에 의해 실시할 수 있다. 특히 바람직하게는 비경구 투여에 의한 투여 방법이며, 이러한 투여 방법으로서는 구체적으로는, 주사 투여, 경비 투여, 경폐 투여, 경피 투여 등을 들 수 있다. 주사 투여로서는, 예를 들면, 정맥내 주사, 근육내 주사, 복강내 주사, 피하 주사 등을 들 수 있다. 예를 들면 주사 투여에 의해 본 발명의 의약 조성물, 또는 세포상해 유도제 및 세포 증식 저해제를 전신 또는 국부적으로 투여할 수 있다. 또한, 피험 동물의 연령, 증상에 따라 적절히 투여 방법을 선택할 수 있다. 수용액으로서 투여되는 경우에 있어서는 순수하게 본 발명의 다중특이성 항원 결합 분자만을 함유하는 수용액이어도 되고, 예를 들면 상기 기재의 계면활성제, 부형제, 착색료, 착향료, 보존료, 안정제, 완충제, 현탁제, 등장화제, 결합제, 붕괴제, 활택제, 유동성 촉진제, 교미제 등을 포함하는 용액이어도 된다. 투여량으로서는, 예를 들면, 1회의 투여에 대해 체중 1kg당 0.0001mg 내지 1000mg의 범위에서 투여량을 선택할 수 있다. 또는, 예를 들면, 환자당 0.001 내지 100000mg/body의 범위에서 투여량을 선택할 수 있다. 그러나, 본 발명의 다중특이성 항원 결합 분자의 투여량은 이들 투여량으로 제한되는 것은 아니다.Further, in the present invention, " contact " is further carried out by administering to a non-human animal transplanted with a GPC3 antigen expressing cell into an animal or an animal having a cell expressing the antigen intrinsically in another aspect. The administration method can be carried out by either oral or parenteral administration. Particularly preferred is a method of administration by parenteral administration. Specific examples of such administration methods include injection, intensive administration, transpulmonary administration, and transdermal administration. Examples of injecting administration include intravenous injection, intramuscular injection, intraperitoneal injection, subcutaneous injection, and the like. For example, the pharmaceutical composition of the present invention, cytotoxic inducer and cell proliferation inhibitor can be administered systemically or locally by injection administration. In addition, the administration method can be appropriately selected according to the age and symptom of the test animal. When administered as an aqueous solution, it may be an aqueous solution containing only the multispecific antigen-binding molecules of the present invention. For example, the surfactant, excipient, coloring agent, flavoring agent, preservative, stabilizer, buffer, , A binder, a disintegrant, a lubricant, a flowability promoter, a compatibilizer, and the like. As the dose, for example, the dosage can be selected in the range of 0.0001 mg to 1000 mg per 1 kg of body weight per administration. Alternatively, the dosage can be selected, for example, in the range of 0.001 to 100,000 mg / body per patient. However, the dosage of the multispecific antigen binding molecules of the present invention is not limited to these dosages.
본 발명의 다중특이성 항원 결합 분자의 접촉에 의해 당해 항원 결합 분자를 구성하는 글리피칸 3 결합 활성을 갖는 항체 가변 영역을 갖는 도메인이 결합하는 글리피칸 3 항원을 발현하는 세포에 야기된 세포상해를 평가 또는 측정하는 방법으로서, 이하의 방법이 적합하게 사용된다. 시험관 내에 있어서 해당 세포상해 활성을 평가 또는 측정하는 방법으로서는, 세포상해성 T 세포 활성 등의 측정법을 예로 들 수 있다. 본 발명의 다중특이성 항원 결합 분자가 T 세포성 상해 활성을 갖는지 여부는 공지의 방법에 의해 측정할 수 있다(예를 들면, Current protocols in Immunology, Chapter 7. Immunologic studies in humans, Editor, John E, Coligan et al., John Wiley & Sons, Inc., (1993) 등). 활성의 측정에 있어서는, 글리피칸 3과는 상이한 항원이고 시험에 사용하는 세포가 발현하고 있지 않은 항원에 결합하는 항원 결합 분자를, 본 발명의 다중특이성 항원 결합 분자와 마찬가지로 대조로서 사용하여, 본 발명의 다중특이성 항원 결합 분자가 대조로서 사용된 항원 결합 분자보다도 강한 세포상해 활성을 나타내는 것에 의해 활성이 판정될 수 있다.The cytotoxic effect on the cells expressing the
또한, 생체 내에서 세포상해 활성을 평가 또는 측정하기 위해서, 예를 들면 글리피칸 3 항원을 발현하는 세포를, 비인간 피험 동물의 피내 또는 피하에 이식 후, 당일 또는 익일부터 매일 또는 수일 간격으로 피험 항원 결합 분자를 정맥 또는 복강내에 투여한다. 종양의 크기를 경일적으로 측정하는 것에 의해 당해 종양의 크기의 변화의 차이가 세포상해 활성이라고 규정될 수 있다. 시험관 내에서의 평가와 마찬가지로 대조가 되는 항원 결합 분자가 투여되고, 본 발명의 항원 결합 분자의 투여군에 있어서의 종양의 크기가 대조 항원 결합 분자의 투여군에 있어서의 종양의 크기보다도 유의하게 작은 것이 세포상해 활성을 갖는다고 판정될 수 있다.In addition, in order to evaluate or measure the cytotoxic activity in vivo, for example,
글리피칸 3 항원을 발현하는 세포의 증식에 대한 억제 효과를 평가 또는 측정하는 방법으로서는, 아이소토프 라벨링한 thymidine의 세포로의 흡수 측정이나 MTT법이 적합하게 이용된다. 또한, 생체 내에서 세포 증식 억제 활성을 평가 또는 측정하는 방법으로서, 상기 기재의 생체 내에 있어서 세포상해 활성을 평가 또는 측정하는 방법과 동일한 방법을 적합하게 이용할 수 있다.As a method for evaluating or measuring the inhibitory effect on the proliferation of cells expressing the
또한 본 발명은, 본 발명의 다중특이성 항원 결합 분자 또는 본 발명의 제조 방법에 의해 제조된 다중특이성 항원 결합 분자를 포함하는, 본 발명의 방법에 이용하기 위한 키트를 제공한다. 해당 키트에는, 기타, 약학적으로 허용되는 담체, 매체, 사용 방법을 기재한 지시서 등을 패키징해 둘 수 있다.The present invention also provides a kit for use in the method of the invention, comprising a multispecific antigen binding molecule of the invention or a multispecific antigen binding molecule produced by the method of the invention. The kit may be packaged with other, pharmaceutically acceptable carrier, medium, instructions describing the method of use, and the like.
또한 본 발명은, 본 발명의 방법에 사용하기 위한, 본 발명의 다중특이성 항원 결합 분자 또는 본 발명의 제조 방법에 의해 제조된 다중특이성 항원 결합 분자에 관한 것이다.The present invention also relates to a multispecific antigen binding molecule of the invention or a multispecific antigen binding molecule produced by the method of the invention for use in the methods of the invention.
또한 본 발명은, 본 발명의 다중특이성 항원 결합 분자의 GPC3 결합 활성을 갖는 항체 가변 영역을 포함하는 도메인을 포함하는, GPC3 결합 활성을 갖는 분자에 관한 것이다. 또한 본 발명은, 해당 분자에 포함되는 H쇄 및 L쇄의 각각 3개의 CDR(합계 6개의 CDR)을 포함하는 각각 H쇄 및 L쇄의 항체 가변 영역을 포함하고, GPC3 결합 활성을 갖는 분자에 관한 것이다. 또한 본 발명은, 본 발명의 다중특이성 항원 결합 분자의 T 세포 수용체 복합체 결합 활성을 갖는 항체 가변 영역을 포함하는 도메인을 포함하는, T 세포 수용체 복합체 결합 활성을 갖는 분자에 관한 것이다. 또한 본 발명은, 해당 분자에 포함되는 H쇄 및 L쇄의 각각 3개의 CDR(합계 6개의 CDR)을 포함하는 각각 H쇄 및 L쇄의 항체 가변 영역을 포함하고, T 세포 수용체 복합체 결합 활성을 갖는 분자에 관한 것이다. 이들 분자는 항체여도 되고, 항체의 항원 결합 단편을 포함하는 폴리펩타이드여도 된다. 또한 본 발명은, 이들 분자와 중복 또는 경합하는 에피토프에 결합하는 항체 또는 그 항원 결합 단편을 포함하는 폴리펩타이드에 관한 것이다. 항체의 항원 결합 단편을 포함하는 폴리펩타이드로서는, scFv, 단쇄 항체(single chain antibody), Fv, scFv2(single chain Fv 2), Fab 및 F(ab')2 등을 적합하게 들 수 있다. 또한 이들 분자는, 다중특이성(이중특이성)이 아니어도 되고, GPC3 또는 T 세포 수용체 복합체(예를 들면 CD3 ε쇄) 중 어느 쪽에 밖에 결합하지 않아도 된다.The present invention also relates to a molecule having GPC3 binding activity comprising a domain comprising an antibody variable region having GPC3 binding activity of a multispecific antigen binding molecule of the invention. The present invention also relates to a method for producing a protein having an antibody variable region of H chain and L chain comprising three CDRs (total of six CDRs) of each of the H chain and L chain contained in the molecule, . The present invention also relates to a molecule having a T cell receptor complex binding activity comprising a domain comprising an antibody variable region having T cell receptor complex binding activity of the multispecific antigen binding molecule of the present invention. The present invention also provides a method for detecting T-cell receptor complex-binding activity, which comprises an antibody variable region of H chain and L chain, respectively, comprising three CDRs (six CDRs in total) of the H chain and L chain contained in the molecule, ≪ / RTI > These molecules may be antibodies or polypeptides comprising an antigen-binding fragment of an antibody. The present invention also relates to a polypeptide comprising an antibody or an antigen-binding fragment thereof that binds to an epitope overlapping or competing with these molecules. Examples of the polypeptide comprising the antigen-binding fragment of the antibody include scFv, single chain antibody, Fv, scFv2 (single chain Fv2), Fab and F (ab ') 2. These molecules may not be multispecific (double specific), and may be bound only to either GPC3 or a T cell receptor complex (for example, CD3? Chain).
이들 분자에는, 본원 명세서의 실시예에 있어서 구체적으로 예시되어 있는 다중특이성 항원 결합 분자의 GPC3 결합 활성을 갖는 항체 가변 영역을 포함하는 도메인(GPC3 결합 활성을 갖는 H쇄 가변 영역 및 공통 L쇄 가변 영역을 포함한다)을 포함하는 분자나, 본원 명세서의 실시예에 있어서 예시되어 있는 다중특이성 항원 결합 분자의 T 세포 수용체 복합체 결합 활성을 갖는 항체 가변 영역을 포함하는 도메인(T 세포 수용체 복합체 결합 활성을 갖는 H쇄 가변 영역 및 공통 L쇄 가변 영역을 포함한다)을 포함하는 분자가 포함되는 것 외, 그들 분자에 포함되는 H쇄 및 L쇄의 각각 3개의 CDR(합계 6개의 CDR)을 포함하고, 동일한 항원 단백질(GPC3 또는 T 세포 수용체 복합체)에 결합하는 활성을 갖는 분자가 포함된다.These molecules include a domain comprising an antibody variable region having GPC3 binding activity of the multispecific antigen binding molecule specifically exemplified in the Examples of the present specification (H chain variable region having GPC3 binding activity and common L chain variable region , A domain comprising an antibody variable region having T cell receptor complex binding activity of a multispecific antigen binding molecule as exemplified in the examples herein (including a T cell receptor complex binding activity H chain variable region, and common L chain variable region), as well as three CDRs (six CDRs in total) of the H chain and the L chain included in the molecules, and the same A molecule having an activity of binding to an antigen protein (GPC3 or T cell receptor complex).
이들 분자는, 본 발명의 다중특이성 항원 결합 분자와 CDR이 공통되기 때문에, 본 발명의 다중특이성 항원 결합 분자와 중복되는 에피토프에 결합하는 것이 기대된다. 따라서, 이들 분자는, 본 발명의 다중특이성 항원 결합 분자와 공존시키는 것에 의해, 본 발명의 다중특이성 항원 결합 분자와 경합시킬 수 있다. 이에 의해, 예를 들면 본 발명의 다중특이성 항원 결합 분자의 활성(항원 결합 활성이나, 세포상해 활성, 항종양 활성 등)을 억제하기 위한 조절제로서 사용할 수 있다. 또한, 미리 이 분자를 표적 단백질(GPC3 또는 T 세포 수용체 복합체)에 결합시켜 두고, 본 발명의 다중특이성 항원 결합 분자가 첨가되었을 때에 경합에 의해 유리되어 오는 분자를 검출하는 것에 의해, 본 발명의 다중특이성 항원 결합 분자가 표적 단백질에 결합한 것을 검출하기 위한 검출제로서 유용하다. 이때, 이들 분자는, 적절히 형광 물질 등으로 표지해도 된다. 또는 이들 분자는, 본 발명의 다중특이성 항원 결합 분자와 중복되는 에피토프에 결합하는 새로운 항체를 스크리닝하기 위해서도 유용하다. 전술한 대로, 미리 이 분자를 표적 단백질(GPC3 또는 T 세포 수용체 복합체)에 결합시켜 두고, 피험 항체를 첨가함으로써, 결합해 있던 분자가 유리되어 오면, 그 피험 항체는, 본 발명의 다중특이성 항원 결합 분자와 중복되는 에피토프로 하는 항체의 후보가 된다. 이에 의해, 새로운 다중특이성 항원 결합 분자를 효율적으로 스크리닝하는 것이 가능해진다.These molecules are expected to bind to an epitope that overlaps with the multispecific antigen binding molecule of the present invention because the CDRs are common to the multispecific antigen binding molecules of the present invention. Thus, these molecules can compete with the multispecific antigen binding molecules of the invention by coexisting with the multispecific antigen binding molecules of the invention. Thus, for example, it can be used as a modulator for inhibiting the activity (antigen binding activity, cytotoxic activity, antitumor activity, etc.) of the multispecific antigen binding molecule of the present invention. It is also possible to bind the molecule to a target protein (GPC3 or T cell receptor complex) in advance and to detect molecules released by competition when the multispecific antigen binding molecule of the present invention is added, Is useful as a detecting agent for detecting that a specific antigen binding molecule is bound to a target protein. At this time, these molecules may be appropriately labeled with a fluorescent substance or the like. Or these molecules are also useful for screening new antibodies that bind to an epitope that overlaps with the multispecific antigen binding molecules of the invention. As described above, when this molecule is bound to a target protein (GPC3 or a T cell receptor complex) in advance and the bound molecule is released by adding the test antibody, the test antibody binds to the multispecific antigen binding It is a candidate for an epitope that overlaps with a molecule. This makes it possible to efficiently screen for new multispecific antigen binding molecules.
이들 분자에 있어서의 H쇄 가변 영역 및 L쇄 가변 영역의 CDR의 구체적인 조합은, 본 발명의 다중특이성 항원 결합 분자의 각 CDR의 조합으로서 본 명세서에 예시한 것을 그대로 사용할 수 있다. 이들 분자의 항원 친화성(KD값)은, 바람직하게는 본 발명의 다중특이성 항원 결합 분자의 KD값으로서 본 명세서에 예시한 값인 것이 바람직하지만, 그것에 한정되지 않는다.The specific combination of the CDRs of the H chain variable region and the L chain variable region in these molecules can be used as a combination of CDRs of the multispecific antigen binding molecule of the present invention as exemplified in this specification. The antigen affinity (KD value) of these molecules is preferably the value exemplified in the present specification as the KD value of the multispecific antigen binding molecule of the present invention, but it is not limited thereto.
또한 본 발명은, 이들 분자를 코딩하는 핵산, 해당 핵산이 도입된 벡터, 해당 핵산 또는 해당 벡터를 포함하는 세포, 해당 세포를 배양하는 것에 의해 해당 분자를 제조하는 방법, 및 해당 방법에 의해 제조된 분자에도 관한 것이다.The present invention also relates to a nucleic acid encoding these molecules, a vector into which the nucleic acid is introduced, a cell containing the nucleic acid or the vector, a method of producing the molecule by culturing the cell, It is also about molecules.
한편, 본 명세서에 있어서 인용된 모든 선행 기술 문헌은 참조로서 본 명세서에 포함된다.On the other hand, all prior art documents cited herein are incorporated herein by reference.
실시예Example
이하에 실시예에 의해 본 발명을 보다 상세하게 설명하지만, 이들 실시예는 본 발명의 범위를 제한하는 것은 아니다.Hereinafter, the present invention will be described in more detail with reference to examples, but the scope of the present invention is not limited to these examples.
〔실시예 1〕 GPC3_ERY22_rCE115의 제작과 세포상해 활성의 측정[Example 1] Preparation of GPC3_ERY22_rCE115 and measurement of cytotoxic activity
(1-1) GPC3_ERY22_rCE115의 제작(1-1) Production of GPC3_ERY22_rCE115
암항원(GPC3)에 대한 IgG를 기본 골격으로 하고, 다른 쪽의 Fab를 CD3 epsilon에 대한 결합 도메인으로 바꿔 놓은 형태의 분자가 제작되었다. 이때, 기본 골격으로 하는 IgG의 Fc로서는, FcgR(Fcγ 수용체)에 대한 결합성이 감약된 사일런트형 Fc가 이용되었다. GPC3에 대한 결합 도메인으로서, 항GPC3 항체 H0000(서열번호: 40)/GL4(서열번호: 41)가 이용되었다. 또한 CD3에 대한 결합 도메인으로서, 항CD3 항체 rCE115H/rCE115L(서열번호: 42/서열번호: 43)이 이용되었다.Molecules were constructed in which IgG to the cancer antigen (GPC3) was replaced by the basic framework and the other Fab was replaced with the binding domain for CD3 epsilon. At this time, as the Fc of IgG to be a basic skeleton, a silent Fc in which binding to FcgR (Fc? Receptor) was reduced was used. As the binding domain for GPC3, the anti-GPC3 antibody H0000 (SEQ ID NO: 40) / GL4 (SEQ ID NO: 41) was used. The anti-CD3 antibody rCE115H / rCE115L (SEQ ID NO: 42 / SEQ ID NO: 43) was also used as the binding domain for CD3.
항체 H쇄 정상 영역으로서, IgG1의 C 말단의 Gly 및 Lys를 제거한 G1d를 사용하고, 그것을 H0000/GL4 및 rCE115H/rCE115L과 조합하여 사용했다. 한편, 항체 H쇄 정상 영역의 명칭을 H1로 한 경우, 가변 영역에 H0000을 가지는 항체의 H쇄에 대응하는 서열은 H0000-H1과 같이 나타냈다. 여기에서, 아미노산의 개변을 나타내는 경우에는, D356K와 같이 나타냈다. 최초의 알파벳(D356K의 D에 해당)은 개변 전의 아미노산 잔기를 1문자 표기로 나타낸 경우의 알파벳을 의미하고, 그것에 이어지는 숫자(D356K의 356에 해당)는 그 개변 개소의 EU 넘버링을 의미하며, 마지막 알파벳(D356K의 K에 해당)은 개변 후의 아미노산 잔기를 1문자 표기로 나타낸 경우의 알파벳을 의미한다. IgG1의 C 말단의 Gly 및 Lys를 제거한 G1dh(서열번호: 44), G1dh에 L234A/L235A/Y349C/T366W의 변이를 도입한 ERY22_Hk(서열번호: 45), G1dh에 L234A/L235A/D356C/T366S/L368A/Y407V의 변이를 도입한 ERY22_Hh(서열번호: 46)를 참고 실시예 1의 방법에 따라 조제했다. 각각의 H쇄에 도입한 L234A 및 L235A의 변이는, FcgR(Fcγ 수용체)에 대한 결합성을 감약하기 위해, 또한 Y349C/T366W 및 D356C/T366S/L368A/Y407V의 변이는, 2개의 H쇄로 이루어지는 헤테로이량화 항체를 산생할 때에, 각 H쇄의 헤테로체를 효율적으로 형성시키기 위해서 도입했다.As the antibody H chain normal region, G1d from which Gly and Lys at the C terminus of IgG1 had been removed was used and used in combination with H0000 / GL4 and rCE115H / rCE115L. On the other hand, when the name of the antibody H chain normal region was H1, the sequence corresponding to the H chain of the antibody having H0000 in the variable region was expressed as H0000-H1. Here, when amino acid modification is indicated, it is expressed as D356K. The first alphabet (corresponding to D in D356K) means the alphabetical character when the amino acid residues before modification are expressed in single-letter notation, and the number following it (corresponding to 356 in D356K) means the EU numbering of the alteration point. The alphabet (corresponding to K in D356K) means the alphabet when the amino acid residues after modification are indicated in single-letter notation. (SEQ ID NO: 44) in which Gly and Lys at the C-terminal of IgG1 were deleted, ERY22_Hk (SEQ ID NO: 45) into which a mutation of L234A / L235A / Y349C / T366W was introduced into G1dh and L234A / L235A / D356C / T366S / ERY22_Hh (SEQ ID NO: 46) incorporating the mutation of L368A / Y407V was prepared according to the method of Reference Example 1. The mutations of L234A and L235A introduced into each H chain are mutated in order to attenuate the binding to FcgR (Fc? Receptor), and the mutations of Y349C / T366W and D356C / T366S / L368A / Y407V are heterozygous Was introduced in order to efficiently form the heterochromes of the respective H chains when producing the antibody.
GPC3에 대한 Fab의 VH 도메인과 VL 도메인을 바꿔 놓은 헤테로이량화 항체 GPC3_ERY22_rCE115(도 1a)가 참고 실시예 1에 따라 제작되었다.The heterodimer antibody GPC3_ERY22_rCE115 (FIG. 1A), which changed the VH and VL domains of Fab against GPC3, was constructed according to Reference Example 1.
즉, 상기한 방법과 마찬가지의 적절한 서열을 부가한 프라이머를 이용한 PCR법 등의 당업자에게 공지인 방법에 의해, GL4-ERY22_Hk(서열번호: 47), H0000-ERY22_L(서열번호: 48), rCE115H-ERY22_Hh(서열번호: 49), rCE115L-k0(서열번호: 50)을 각각 코딩하는 폴리뉴클레오타이드가 삽입된 일련의 발현 벡터가 제작되었다.In other words, GL4-ERY22_Hk (SEQ ID NO: 47), H0000-ERY22_L (SEQ ID NO: 48), rCE115H- A series of expression vectors into which polynucleotides coding for ERY22_Hh (SEQ ID NO: 49) and rCE115L-k0 (SEQ ID NO: 50), respectively, were prepared.
이하에 나타내는 조합의 발현 벡터가 FreeStyle293-F 세포에 도입되어, 각 목적 분자를 일과성으로 발현시켰다.Expression vectors shown below in combination were introduced into FreeStyle293-F cells, and each target molecule was transiently expressed.
목적 분자: GPC3_ERY22_rCE115Target molecule: GPC3_ERY22_rCE115
발현 벡터에 삽입된 폴리뉴클레오타이드에 의해 코딩되는 폴리펩타이드: GL4-ERY22_Hk, H0000-ERY22_L, rCE115H-ERY22_Hh, rCE115L-k0Polypeptides encoded by polynucleotides inserted in expression vectors: GL4-ERY22_Hk, H0000-ERY22_L, rCE115H-ERY22_Hh, rCE115L-k0
(1-2) GPC3_ERY22_rCE115의 정제(1-2) Purification of GPC3_ERY22_rCE115
얻어진 배양 상청이 Anti FLAG M2 컬럼(Sigma사)에 첨가되고, 당해 컬럼의 세정 후, 0.1mg/mL FLAG 펩타이드(Sigma사)에 의한 용출이 실시되었다. 목적 분자를 포함하는 분획이 HisTrap HP 컬럼(GE Healthcare사)에 첨가되고, 당해 컬럼의 세정 후, 이미다졸의 농도 구배에 의한 용출이 실시되었다. 목적 분자를 포함하는 분획이 한외 여과에 의해 농축된 후, 당해 분획이 Superdex 200 컬럼(GE Healthcare사)에 첨가되고, 용출액의 단량체 분획만을 회수하는 것에 의해 정제된 각 목적 분자가 얻어졌다.The obtained culture supernatant was added to an Anti FLAG M2 column (Sigma), and the column was washed and eluted with 0.1 mg / mL FLAG peptide (Sigma). The fraction containing the target molecule was added to a HisTrap HP column (GE Healthcare), and after washing of the column, elution by concentration gradient of imidazole was carried out. After the fraction containing the objective molecule was concentrated by ultrafiltration, the fraction was added to a
(1-3) 인간 말초혈 단핵구를 이용한 GPC3_ERY22_rCE115의 세포상해 활성의 측정(1-3) Measurement of cytotoxic activity of GPC3_ERY22_rCE115 using human peripheral blood mononuclear cells
GPC3_ERY22_rCE115에 대하여 in vitro의 세포상해 활성이 조사되었다.In vitro cytotoxic activity of GPC3_ERY22_rCE115 was investigated.
(1-3-1) 인간 말초혈 단핵구(PBMC) 용액의 조제(1-3-1) Preparation of human peripheral blood mononuclear cell (PBMC) solution
1,000단위/mL의 헤파린 용액(노보·헤파린주 5천 단위, 노보·노디스크사)을 미리 100μL 주입한 주사기를 이용하여, 건강한 정상인 지원자(성인)로부터 말초혈 50mL가 채취되었다. PBS(-)로 2배 희석한 후에 4등분된 말초혈이, 15mL의 Ficoll-Paque PLUS를 미리 주입하여 원심 조작이 행해진 Leucosep 림프구 분리관(Cat. No. 227290, Greiner bio-one사)에 가해졌다. 당해 분리관의 원심 분리(2,150rpm, 10분간, 실온) 후, 단핵구 분획층이 분취되었다. 10% FBS를 포함하는 Dulbecco's Modified Eagle's Medium(SIGMA사, 이하 10% FBS/D-MEM)으로 1회 단핵구 분획의 세포가 세정된 후, 당해 세포는 10% FBS/D-MEM을 이용하여 그 세포 밀도가 4×106/mL로 조제되었다. 이와 같이 조제된 세포 용액이 인간 PBMC 용액으로서 이후의 시험에 이용되었다.50 mL of peripheral blood was collected from a healthy healthy donor (adult) using a syringe with 100 μL of 1,000 units / mL of heparin solution (5,000 units of Novo-Heparin, Novo Nordisk). After a 2-fold dilution with PBS (-), quadruplicate peripheral blood was added to a Leucosep lymphocyte separator (Cat. No. 227290, Greiner bio-one) that had been previously centrifuged with 15 mL of Ficoll-Paque PLUS lost. After centrifugation (2,150 rpm, 10 minutes, room temperature) of the isolation tube, the mononuclear cell fraction layer was collected. After cells of the mononuclear cell fraction were washed once with Dulbecco's Modified Eagle's Medium (SIGMA, 10% FBS / D-MEM) containing 10% FBS, the cells were washed with 10% FBS / D- And the density was adjusted to 4 x 10 < 6 > / mL. The cell solution thus prepared was used as a human PBMC solution for subsequent testing.
(1-3-2) 세포상해 활성의 측정(1-3-2) Measurement of cytotoxic activity
세포상해 활성은 xCELLigence 리얼타임 셀 애널라이저(로슈·다이어그노스틱스사)를 이용한 세포 증식 억제율로 평가되었다. 표적 세포에는 인간 GPC3을 발현하고 있는 NCI-H446 인간 암세포주 또는 PC-10 인간 암세포주가 이용되었다. NCI-H446 또는 PC-10을 디쉬로부터 박리하고, 1×104cells/well이 되도록 E-Plate 96(로슈·다이어그노스틱스사) 플레이트에 100μL/well로 뿌리고, xCELLigence 리얼타임 셀 애널라이저를 이용하여 생세포의 측정이 개시되었다. 익일 xCELLigence 리얼타임 셀 애널라이저로부터 플레이트를 취출하고, 당해 플레이트에 각 농도(0.004, 0.04, 0.4, 4, 40nM)로 조제한 각 항체 50μL가 첨가되었다. 실온에서 15분간 반응시킨 후에 (1-2)에서 조제된 인간 PBMC 용액 50μL(2×105cells/well)가 가해지고, xCELLigence 리얼타임 셀 애널라이저에 당해 플레이트를 재세팅하는 것에 의해, 생세포의 측정이 개시되었다. 반응은 5% 탄산 가스, 37℃ 조건하에서 행해지고, 인간 PBMC 첨가 72시간 후의 Cell Index값으로부터, 아래 식에 의해 세포 증식 억제율(%)이 구해졌다. 한편, 계산에 이용한 Cell Index값은 항체 첨가 직전의 Cell Index값이 1이 되도록 노멀라이징한 후의 수치가 이용되었다.Cytotoxic activity was assessed as inhibition of cell proliferation using an xCELLigence real-time cell analyzer (Roche Diagnostics). NCI-H446 human cancer cell line or PC-10 human cancer cell line expressing human GPC3 was used as a target cell. NCI-H446 or PC-10 was peeled from the dish and sparged with 100 μL / well on a plate of E-Plate 96 (Roche Diagnostics) at a density of 1 × 10 4 cells / well. Using a xCELLigence real-time cell analyzer Measurement of live cells was initiated. Plates were removed from the next day xCELLigence real-time cell analyzer and 50 μL of each antibody prepared at each concentration (0.004, 0.04, 0.4, 4, 40 nM) was added to the plate. After reacting at room temperature for 15 minutes, 50 μL (2 × 10 5 cells / well) of the human PBMC solution prepared in (1-2) was added, and the plate was re-set in an xCELLigence real-time cell analyzer, . The reaction was carried out under the conditions of 5% carbon dioxide gas and 37 ° C. Cell proliferation inhibition rate (%) was obtained from the Cell Index value after 72 hours of addition of human PBMC by the following formula. On the other hand, the cell index value used for the calculation was the value obtained after the normalization so that the cell index value before the addition of the antibody was 1.
세포 증식 억제율(%) = (A-B)×100/(A-1)Cell proliferation inhibition rate (%) = (A-B) x 100 / (A-1)
A는 항체를 첨가하고 있지 않은 웰에 있어서의 Cell Index값의 평균값(표적 세포와 인간 PBMC만), B는 각 웰에 있어서의 Cell Index값의 평균값을 나타낸다. 시험은 triplicate로 행해졌다.A represents the average value of the Cell Index value (only the target cell and the human PBMC) in the well to which the antibody is not added, and B represents the average value of the Cell Index value in each well. The test was done in triplicate.
인간 혈액으로부터 조제한 PBMC(Peripheral Blood Mononuclear Cell)를 이펙터 세포로 해서, GPC3_ERY22_rCE115의 세포상해 활성을 측정한 바, 극히 강한 활성이 확인되었다(도 2).The cell injury activity of GPC3_ERY22_rCE115 was measured using PBMC (Peripheral Blood Mononuclear Cell) prepared from human blood as an effector cell, and extremely strong activity was confirmed (FIG. 2).
〔실시예 2〕 항CD3 항체 rCE115의 H쇄의 인간화, 및 공통 L쇄화[Example 2] Humanization of the H chain of the anti-CD3 antibody rCE115 and common ligation
(2-1) rCE115 인간화 H쇄 가변 영역 hCE115HA의 디자인(2-1) Design of rCE115 humanized H chain variable region hCE115HA
항CD3 항체 rCE115의 H쇄 가변 영역(서열번호: 42)의 인간화가 실시되었다. CDR, FR의 결정은 Kabat의 정의(Kabat 넘버링)에 따랐다.Humanization of the H chain variable region (SEQ ID NO: 42) of anti-CD3 antibody rCE115 was performed. The determination of CDR, FR was in accordance with the definition of Kabat (Kabat numbering).
처음에, 데이터베이스상의 인간 항체 가변 영역 서열과 rCE115 래트 가변 영역 서열을 비교하는 것에 의해, 인간 FR 서열이 선택되었다. 데이터베이스로서, IMGT Database(http://www.imgt.org/) 및 NCBI GenBank(http://www.ncbi.nlm.nih.gov/genbank/)가 이용되었다. rCE115 가변 영역의 H쇄의 CDR 서열을, 선택한 인간 FR 서열과 연결하는 것에 의해, 인간화 H쇄 가변 영역 서열이 디자인되었다. 이것이 인간화 H쇄 가변 영역 서열 hCE115HL(서열번호: 51)이 되었다.Initially, human FR sequences were selected by comparing rCE115 rat variable region sequences with human antibody variable region sequences on the database. As a database, IMGT Database (http://www.imgt.org/) and NCBI GenBank (http://www.ncbi.nlm.nih.gov/genbank/) were used. By linking the CDR sequence of the H chain of the rCE115 variable region with the selected human FR sequence, a humanized H chain variable region sequence was designed. This was the humanized H chain variable region sequence hCE115HL (SEQ ID NO: 51).
선택된 인간 H쇄 FR3의 서열에 있어서, Kabat 넘버링으로 표시되는 93번의 아미노산 잔기는 Ala이지만, rCE115 가변 영역 서열의 아미노산 잔기는 Arg이다. 래트 및 인간의 germline 서열의 데이터베이스 IMGT Database(http://www.imgt.org/)로부터, 해당 부위에 Arg가 포함되어 있는 서열은 적다는 것이 확인되었다. 또한, Kabat 넘버링으로 표시되는 94번의 아미노산 잔기는 upper core를 형성하여 항체 구조의 안정화에 기여한다는 것이 보고되어 있다(Ewert 등(Methods. 2004 Oct;34(2):184-99)). 이들 정보로부터, H쇄 FR3의 Kabat 93번, 94번의 아미노산 잔기가 rCE115 가변 영역 서열에 존재하는 잔기로 치환된 인간화 H쇄 가변 영역 서열이 새롭게 디자인되었다. 이것이 인간화 H쇄 가변 영역 서열 hCE115HA(서열번호: 52)가 되었다.In the sequence of the selected human H chain FR3, the amino
(2-2) 항CD3 항체 rCE115와 항GPC3 항체의 공통 L쇄 L0000의 디자인(2-2) Anti-CD3 antibody Common design of rCE115 and anti-GPC3 antibody Design of L0000
항CD3 항체 rCE115의 L쇄 가변 영역 rCE115L(서열번호: 43)과 항GPC3 항체의 L쇄 가변 영역 GL4(서열번호: 41)의 FR/CDR 셔플링이 실시되었다.FR / CDR shuffling of the L chain variable region rCE115L (SEQ ID NO: 43) of the anti-CD3 antibody rCE115 and the L chain variable region GL4 (SEQ ID NO: 41) of the anti-GPC3 antibody was performed.
L쇄 FR 서열로서, GL4의 FR 서열이 선택되었다. L쇄 CDR2는 rCE115L과 GL4에서 동일했다. L쇄 CDR1은 GL4, L쇄 CDR3은 rCE115L의 CDR 서열로부터 각각 선택되었다. 또, 선택된 L쇄 CDR3의 Kabat 94번의 아미노산 잔기 Asp가 GL4에 존재하는 잔기 Val로 치환된 L쇄 CDR3이 새롭게 디자인되었다.As the L chain FR sequence, the FR sequence of GL4 was selected. L chain CDR2 was identical in rCE115L and GL4. L chain CDR1 was selected from GL4, and L chain CDR3 was selected from CDR sequences of rCE115L, respectively. In addition, L-chain CDR3 in which the amino acid residue Asp of
상기에서 선택한 FR과 CDR을 연결하는 것에 의해, 인간화 L쇄 가변 영역 서열이 디자인되었다. 이것이 인간화 L쇄 가변 영역 서열 L0000(서열번호: 53)이 되었다.By linking the FRs selected above with CDRs, a humanized L chain variable region sequence was designed. This was the humanized L chain variable region sequence L0000 (SEQ ID NO: 53).
(2-3) 인간 GPC3에 대한 친화성의 평가(2-3) Evaluation of affinity for human GPC3
L쇄 가변 영역으로서, GL4(서열번호: 41)와 L0000(서열번호: 53)을 이용했을 때의 인간 GPC3에 대한 결합 활성을 평가했다. 분자형은, knobs-into-hole에 의해 헤테로화된 인간 IgG1의 Fc 영역에 1개의 Fab를 가지는 1-arm 항체로 실시했다. 항GPC3 항체의 H쇄 가변 영역은 H0000(서열번호: 40)을 이용했다.The binding activity to human GPC3 was evaluated using GL4 (SEQ ID NO: 41) and L0000 (SEQ ID NO: 53) as the L chain variable region. The molecular form was performed with a 1-arm antibody with one Fab in the Fc region of human IgG1 heterozygous by knobs-into-holes. The H chain variable region of the anti-GPC3 antibody was H0000 (SEQ ID NO: 40).
항GPC3 항체의 항원에 대한 친화성과 결합 속도 상수를, BiacoreTM-T200(GE헬스케어·재팬)에 의한 표면 플라스몬 공명 어세이의 multi-cycle kinetics법에 의해 측정했다. 런닝 버퍼에는 HBS-EP+(GE헬스케어·재팬)를 이용하고, 아민 커플링 키트(GE헬스케어·재팬)를 이용하여, Protein A/G를 CM5칩(카복시메틸덱스트란 피복칩)에 공유 결합시켰다. 각 항GPC3 항체는 Protein A/G에 약 100RU 포착되도록 조제했다. 애널라이트로서 이용한 인간 GPC3은 HBS-EP+를 이용하여 8, 16, 32, 64, 128nM로 조제했다. 측정은 우선 항체 용액을 Protein A/G에 포착시키고, 더욱이 유속 30μL/min에서 인간 GPC3 용액을 3min 인젝션함으로써 반응시키고, 그 후 HBS-EP+로 전환하여 15min 해리상을 측정했다. 해리상의 측정 종료 후, 10mM Gly-HCl, pH 1.5로 세정하여, 센서칩을 재생했다. 농도 0의 측정은 마찬가지로 항체 용액을 Protein A/G에 포착시키고, HBS-EP+를 3min 인젝션함으로써 반응시키고, 그 후 HBS-EP+로 전환하여 15min 해리상을 측정했다. 해리상의 측정 종료 후, 10mM Gly-HCl, pH 1.5로 세정하여, 센서칩을 재생했다. 얻어진 센서그램으로부터, Biacore 전용의 데이터 해석 소프트웨어인 Biacore T200 Evaluation Software Version 1.0을 이용해 속도론적인 해석을 행하여, 결합 속도 상수(ka), 해리 속도 상수(kd) 및 속도 상수비를 산출했다. 결과를 표 6에 나타냈다.The affinity of the anti-GPC3 antibody for the antigen and the binding rate constant were determined by the multi-cycle kinetics method of the surface plasmon resonance assay by Biacore TM -T200 (GE Healthcare Japan). Protein A / G was covalently bonded to a CM5 chip (carboxymethyldextran-coated chip) using an amine coupling kit (GE Healthcare Japan) using a HBS-EP + (GE Healthcare Japan) . Each anti-GPC3 antibody was formulated to capture about 100 RU in Protein A / G. Human GPC3 used as analytes was prepared at 8, 16, 32, 64, and 128 nM using HBS-EP +. First, the antibody solution was captured by Protein A / G, further reacted by injecting the human GPC3 solution for 3 min at a flow rate of 30 μL / min, and then converted to HBS-EP + and the dissociation phase was measured for 15 min. After completion of the dissociation phase measurement, the chip was rinsed with 10 mM Gly-HCl, pH 1.5, and the sensor chip was regenerated. The
(2-4) 인간 CD3에 대한 친화성의 평가(2-4) Evaluation of affinity for human CD3
H쇄 가변 영역으로서 hCE115HA(서열번호: 52), L쇄 가변 영역으로서 L0000(서열번호: 53)을 이용했을 때의 인간 CD3에 대한 결합 활성을 평가했다. 분자형은, knobs-into-hole에 의해 헤테로화한 인간 IgG1의 Fc 영역에 1개의 Fab를 가지는 1-arm 항체로 실시했다.The binding activity to human CD3 was evaluated using hCE115HA (SEQ ID NO: 52) as the H chain variable region and L0000 (SEQ ID NO: 53) as the L chain variable region. The molecular form was carried out with a 1-arm antibody with one Fab in the Fc region of human IgG1, which was heterologized by knobs-into-holes.
항CD3 항체의 항원에 대한 친화성과 결합 속도 상수를, BiacoreTM-T200(GE헬스케어·재팬)에 의한 표면 플라스몬 공명 어세이의 single-cycle kinetics법에 의해 측정했다. 런닝 버퍼에는 HBS-EP+(GE헬스케어·재팬)를 이용하고, 아민 커플링 키트(GE헬스케어·재팬)를 이용하여, 인간 CD3을 CM4칩(카복시메틸덱스트란 피복칩)에 공유 결합시켰다. 애널라이트로서 이용한 항CD3 항체는 HBS-EP+를 이용하여 5, 20μg/mL로 조제했다. 측정은 우선 유속 20μL/min에서, 5, 20μg/mL의 항CD3 항체 용액을 각 3min씩 연속해서 인젝션함으로써 반응시키고, 그 후 HBS-EP+로 전환하여 3min 해리상을 측정했다. 해리상의 측정 종료 후, 10mM Gly-HCl, pH 1.5로 세정하여, 센서칩을 재생했다. 농도 0의 측정은, HBS-EP+를 각 3min씩 2회 연속해서 인젝션함으로써 반응시키고, 그 후 HBS-EP+로 전환하여 3min 해리상을 측정했다. 해리상의 측정 종료 후, 10mM Gly-HCl, pH 1.5로 세정하여, 센서칩을 재생했다. 얻어진 센서그램으로부터, Biacore 전용의 데이터 해석 소프트웨어인 Biacore T200 Evaluation Software Version 1.0을 이용해 속도론적인 해석을 행하여, 결합 속도 상수(ka), 해리 속도 상수(kd) 및 속도 상수비를 산출했다. 결과를 표 7에 나타냈다.Wherein the affinity and association rate constant for the antigen-CD3 antibody, Biacore TM -T200 were measured by surface plasmon resonance assays for single-cycle kinetics by the method (GE Healthcare, Japan). Human CD3 was covalently bound to a CM4 chip (carboxymethyldextran-coated chip) using an amine coupling kit (GE Healthcare Japan) using a HBS-EP + (GE Healthcare Japan) as a running buffer. The anti-CD3 antibody used as analytes was prepared at 5 and 20 μg / mL using HBS-EP +. At first, the reaction was carried out by injecting 5, 20 μg / mL of anti-CD3 antibody solution continuously for 3 min each at a flow rate of 20 μL / min. Thereafter, conversion to HBS-EP + was performed and 3 min dissociation phase was measured. After completion of the dissociation phase measurement, the chip was rinsed with 10 mM Gly-HCl, pH 1.5, and the sensor chip was regenerated. For the measurement of the
(2-5) GPC3_ERY27_hCE115의 제작(2-5) Production of GPC3_ERY27_hCE115
암항원(GPC3)에 대한 IgG4를 기본 골격으로 하여, 다른 쪽의 Fab의 H쇄 가변 영역을 CD3 epsilon에 대한 결합 도메인으로 바꾸고, L쇄는 양쪽의 Fab로 공통되게 한 형태의 ERY27 분자(도 1b)가 제작되었다. 이때, 기본 골격으로 하는 IgG4의 Fc로서는, FcgR(Fcγ 수용체)에 대한 결합성이 감약된 사일런트형 Fc가 이용되었다. GPC3에 대한 결합 도메인의 H쇄 가변 영역은 H0000(서열번호: 40), CD3에 대한 결합 도메인의 H쇄 가변 영역은 hCE115HA(서열번호: 52)가 이용되었다. 또한, L쇄 가변 영역은 L0000(서열번호: 53)을 이용했다. 각각의 H쇄에 도입한 D356K 및 K439E의 변이는, 2개의 H쇄로 이루어지는 헤테로이량화 항체를 산생할 때에, 각 H쇄의 헤테로체를 효율적으로 형성시키기 위해서 도입했다(WO2006/106905). H435R은 Protein A에 대한 결합을 방해하는 개변이며, 헤테로체와 호모체를 효율적으로 분리하기 위해서 도입했다(WO/2011/078332).The H chain variable region of the other Fab was changed to the binding domain for CD3 epsilon with IgG4 as the base for the cancer antigen (GPC3), and the L chain was replaced with the ERY27 molecule ) Was produced. At this time, as the Fc of IgG4 serving as a basic skeleton, a silent Fc with reduced binding to FcgR (Fc? Receptor) was used. The H chain variable region of the binding domain for GPC3 was H0000 (SEQ ID NO: 40), and the H chain variable region of the binding domain for CD3 was hCE115HA (SEQ ID NO: 52). The L chain variable region was L0000 (SEQ ID NO: 53). The mutations of D356K and K439E introduced into each H chain were introduced in order to efficiently form the heterozygotes of the respective H chains when generating the heterodimer antibody composed of two H chains (WO2006 / 106905). H435R is an alteration that interferes with binding to Protein A and is introduced to efficiently separate hetero- and homo-antibodies (WO / 2011/078332).
공지의 방법에 의해, H0000-ERY27_HK(서열번호: 54), hCE115HA-ERY27_HE(서열번호: 55), L0000-k0(서열번호: 56)을 각각 코딩하는 폴리뉴클레오타이드가 삽입된 일련의 발현 벡터가 제작되었다.A series of expression vectors into which a polynucleotide encoding each of H0000-ERY27_HK (SEQ ID NO: 54), hCE115HA-ERY27_HE (SEQ ID NO: 55) and L0000-k0 (SEQ ID NO: 56) .
이하에 나타내는 조합의 발현 벡터가 FreeStyle293-F 세포에 도입되어, 각 목적 분자를 일과성으로 발현시켰다.Expression vectors shown below in combination were introduced into FreeStyle293-F cells, and each target molecule was transiently expressed.
목적 분자: GPC3_ERY27_hCE115Target molecule: GPC3_ERY27_hCE115
발현 벡터에 삽입된 폴리뉴클레오타이드에 의해 코딩되는 폴리펩타이드: H0000-ERY27_HK, hCE115HA-ERY27_HE, L0000-k0Polypeptides encoded by polynucleotides inserted in expression vectors: H0000-ERY27_HK, hCE115HA-ERY27_HE, L0000-k0
(2-6) GPC3_ERY27_hCE115의 정제(2-6) Purification of GPC3_ERY27_hCE115
실시예 1-2에 기재된 방법으로 각 목적 분자가 정제되었다.Each target molecule was purified by the method described in Example 1-2.
(2-7) 인간 말초혈 단핵구를 이용한 세포상해 활성의 측정(2-7) Measurement of cytotoxic activity using human peripheral blood mononuclear cells
(2-7-1) 인간 말초혈 단핵구(PBMC: Peripheral Blood Mononuclear Cell) 용액의 조제(2-7-1) Preparation of a solution of human peripheral blood mononuclear cell (PBMC: Peripheral Blood Mononuclear Cell)
실시예 1-3-1에 기재된 방법으로 조제되었다.Was prepared by the method described in Example 1-3-1.
(2-7-2) 세포상해 활성의 측정(2-7-2) Measurement of cytotoxic activity
실시예 1-3-2에 기재된 방법으로 측정되었다.Was measured by the method described in Example 1-3-2.
인간 혈액으로부터 조제한 PBMC를 이펙터 세포로 해서, GPC3_ERY27_hCE115의 세포상해 활성을 측정한 바, rCE115의 H쇄의 인간화, 및 공통 L쇄화에 의해 활성의 저하가 확인되었다(도 2).PBMC prepared from human blood were used as effector cells to measure the cytotoxic activity of GPC3_ERY27_hCE115, and the decrease in activity was confirmed by humanization of H chain of rCE115 and common ligation (Fig. 2).
〔실시예 3〕 각종 성질의 개선을 목적으로 한 인간화 이중특이성 항체 개변체의 제작과 평가[Example 3] Preparation and evaluation of humanized bispecific antibody variants for the purpose of improving various properties
실시예 2에서 얻어진 인간화 항인간 CD3 ε쇄 및 항인간 GPC3 이중특이성 항체 GPC3_ERY27_hCE115(서열번호 54, 55, 56)의 T 세포 의존적 세포상해 활성은 GPC3_ERY22_rCE115(서열번호 47, 48, 49, 50)의 T 세포 의존적 세포상해 활성보다도 낮다. 이는 인간화 및 L쇄 공통화에 의해 GPC3 및 CD3 ε쇄에 대한 친화성이 감약된 것이 원인이라고 생각되었다. 독립된 서열을 가지는 GPC3 및 CD3 ε쇄 항원에 대하여, 공통 항체 L쇄를 이용하여 양 항원에 대한 친화성을 향상시키고, T 세포 의존적 세포상해 활성을 증강시킨 인간화 이중특이성 항체의 보고는 지금까지 없다. 따라서, GPC3_ERY22_rCE115와 동등하거나 또는 그 이상의 약효를 나타내는 인간화 항체 이중특이성을 취득하는 것은 곤란하다고 생각되었다.The T cell-dependent cytotoxic activity of the humanized anti-human CD3 ε chain and the anti-human GPC3 bispecific antibody GPC3_ERY27_hCE115 (SEQ ID NOs: 54, 55, 56) obtained in Example 2 was evaluated by measuring the T cell-dependent cytotoxic activity of GPC3_ERY22_rCE115 (SEQ ID NOs: 47, 48, 49, Is lower than the cell-dependent cytotoxic activity. This was thought to be due to the loss of affinity for GPC3 and CD3? Chains due to humanization and L chain commonization. There have been no reports of humanized bispecific antibodies that have improved affinity for both antigens and enhanced T cell dependent cytotoxic activity using the common antibody L chain for GPC3 and CD3? Chain antigens having independent sequences. Therefore, it was considered that it was difficult to acquire the humanized antibody bispecificity which shows a drug effect equivalent to or greater than that of GPC3_ERY22_rCE115.
이와 같은 상황 중, 본 출원자 등은 당업자 공지의 방법, 즉 인간 GPC3 및 인간 CD3 ε쇄 양 항원에 대한 항체 유전자의 아미노산 잔기의 망라적 치환체를 제작하여 각종 스크리닝 평가를 실시하는 것에 의해, 인간 GPC3 및 인간 CD3 ε쇄에 대한 친화성이 개변된 인간화 이중특이성 개변 항체를 제작했다. 또한, 마찬가지의 수법에 의해, 물리화학적 성질이 개변된 인간화 이중특이성 개변 항체를 제작했다. 또, 친화성 및 물리화학적 성질을 변화시키기 위한 효과적인 아미노산 잔기 치환을 조합함으로써 인간화 전의 GPC3_ERY22_rCE115의 T 세포 의존적 세포상해 활성과 동등하거나 또는 그 이상의 TDCC 활성을 가지는 최적화 이중특이성 항체를 제작했다.In this situation, the inventors of the present invention have made various methods of screening by producing a comprehensive substitution product of amino acid residues of an antibody gene against human GPC3 and human CD3 ε chain double antigens by methods known to those skilled in the art, A humanized bispecific variant antibody having a modified affinity for human CD3? Chain was prepared. In addition, a humanized bispecific modified antibody whose physicochemical properties were modified was produced by the same method. In addition, an optimized bispecific antibody having a TDCC activity equal to or greater than the T cell-dependent cytotoxic activity of GPC3_ERY22_rCE115 before humanization was prepared by combining effective amino acid residue substitution to change affinity and physicochemical properties.
인간화 이중특이성 항체의 최적화에 있어서의 점변이 도입, 항체 발현 정제, 항원 친화성 측정, T 세포 의존적 세포상해 활성 측정은 실시예 1, 2와 마찬가지의 수법으로 실시했다. CDR, FR의 결정은 Kabat의 정의(Kabat 넘버링)에 따랐다.Introduction of point mutations in the optimization of humanized bispecific antibodies, antibody expression purification, antigen affinity measurement, and T cell dependent cytotoxic activity were measured by the same method as in Examples 1 and 2. The determination of CDR, FR was in accordance with the definition of Kabat (Kabat numbering).
한편, 목적에 따라, 항체 H쇄 정상 영역으로서 다음의 것을 사용했다(번호는 EU 넘버링). 인간 IgG1에 대하여 L234A/L235A/N297A/D356C/T366S/L368A/Y407V/G446 결손/K447 결손 변이를 도입한 E22Hh(서열번호 57), 인간 IgG1에 대하여 L234A/L235A/N297A/Y349C/T366W/G446 결손/K447 결손 변이 및 118의 직전에 Ser-Ser 삽입 변이를 도입한 E22Hk(서열번호 58), 인간 IgG1에 대하여 D356C/T366S/L368A/Y407V/G446 결손/K447 결손 변이를 도입한 G1dh, 인간 IgG1에 대하여 118-215 결손 변이 및 C220S/Y349C/T366W/H435R 변이를 도입한 none-Hi-Kn010G3, 인간 IgG4에 대하여 L235R/S239K/N297A/E356K/R409K/H435R/L445P/G446 결손/K447 결손 변이를 도입한 E2702GsKsc(서열번호 60), 인간 IgG4에 대하여 K196Q/L235R/S239K/N297A/R409K/K439E/L445P/G446 결손/K447 결손 변이를 도입한 E2704sEpsc(서열번호 61), 인간 IgG4에 대하여 L235R/S239K/N297A/E356K/R409K/L445P/G446 결손/K447 결손 변이를 도입한 E2702sKsc(서열번호 62)를 사용했다. 또한, 항체 L쇄 정상 영역으로서, 인간 κ쇄의 k0(서열번호 63), 인간 κ쇄에 대하여 R108A/T109S 변이를 도입한 E22L(서열번호 432)을 사용했다.On the other hand, according to the purpose, the following antibody H chain region was used (numbering is EU numbering). E22Hh (SEQ ID NO: 57) which introduced L234A / L235A / N297A / D356C / T366S / L368A / Y407V / G446 deletion / K447 deletion mutation to human IgG1, L234A / L235A / N297A / Y349C / T366W / G446 deletion / K447 deletion mutants and E22Hk (SEQ ID NO: 58) which introduced Ser-Ser insertion mutation immediately before 118, G1dh which introduced D356C / T366S / L368A / Y407V / G446 deletion / K447 deletion mutation to human IgG1, human IgG1 None-Hi-Kn010G3, which introduced the 118-215 deletion mutation and the C220S / Y349C / T366W / H435R mutation, introduced L235R / S239K / N297A / E356K / R409K / H435R / L445P / G446 deletion / K447 deletion mutation for human IgG4 E2704sEpsc (SEQ ID NO: 60), E2704sEpsc (SEQ ID NO: 61) which introduced K196Q / L235R / S239K / N297A / R409K / K439E / L445P / G446 deletion / K447 deletion mutation for human IgG4, L235R / S239K / N297A / E356K / R409K / L445P / G446 deletion / E442sKsc (SEQ ID NO: 62) introduced K447 deletion mutation was used. As the antibody L chain normal region, k0 (SEQ ID NO: 63) of human kappa chain and E22L (SEQ ID NO: 432) which introduced R108A / T109S mutation to human kappa chain were used.
EU 넘버링 356번째의 Asp를 Cys로 치환하는 변이, 및 EU 넘버링 366번째의 The를 Ser로 치환하는 변이, 및 EU 넘버링 368번째의 Leu를 Ala로 치환하는 변이, 및 EU 넘버링 407번째의 Tyr을 Val로 치환하는 변이, 및 EU 넘버링 349번째의 Tyr을 Cys로 치환하는 변이, 및 EU 넘버링 366번째의 Thr을 Trp로 치환하는 변이, 및 118번째의 직전에 Ser-Ser을 삽입하는 변이는 헤테로 항체를 산생할 때에 각 H쇄의 헤테로 분자를 효율적으로 형성시키기 위한 것이다. 마찬가지로, EU 넘버링 356번째의 Glu를 Lys로 치환하는 변이 및 EU 넘버링 439번째의 Lys를 Glu로 치환하는 변이도 헤테로 항체를 산생할 때에 각 H쇄의 헤테로 분자를 효율적으로 형성시키기 위한 것이다. 이들에 의해, 이중특이성 항체의 생성 효율 개선이 기대된다.The EU numbering 356th Asp to Cys, the EU numbering 366th to the Ser substitution, the EU numbering 368th Leu substitution to Ala, and the EU numbering 407th Tyr to Val , A mutation for substituting Tyr for Cyr for 349th EU numbering with Cys, a mutation for replacing Thr at position 366 of EU with Trp, and a mutation for inserting Ser-Ser immediately before the 118th position are heterologous antibodies And to efficiently form each H-chain hetero-molecule at the time of production. Similarly, a mutation that substitutes Glu for Lys at position 356 of EU numbering and substitution of Glu for Lys at position 439 of EU numbering is intended to efficiently form each H chain of heteromolecules when producing a heterologous antibody. Thus, improvement of the production efficiency of the bispecific antibody is expected.
EU 넘버링 234번째의 Leu를 Ala로 치환하는 변이, 및 EU 넘버링 235번째의 Leu를 Ala 또는 Arg로 치환하는 변이, 및 EU 넘버링 239번째의 Ser을 Lys로 치환하는 변이, 및 EU 넘버링 297번째의 Asn을 Ala로 치환하는 변이는, Fcγ 수용체 및 보체(C1q)에 대한 친화성을 감약시키기 위한 변이이다. 이에 의해, Fab에 의한 CD3 결합과 Fc에 의한 Fcγ 수용체 또는 보체와의 가교를 억제하고, 비특이적인 이펙터 작용 증강에 수반되는 사이토카인 릴리즈 신드롬을 회피하는 것이 기대된다.The EU numbering 234th Leu to Ala, the EU numbering 235th Leu substitution to Ala or Arg, the EU numbering 239th Ser substitution to Lys, and the EU numbering 297th Asn To Ala is a mutation to attenuate the affinity for the Fc [gamma] receptor and complement (Clq). Thus, it is expected that the CD3 binding by the Fab and the crosslinking of Fc receptors or complement by Fc are inhibited, and the cytokine release syndrome accompanied by the nonspecific enhancer action enhancement is avoided.
EU 넘버링 118∼215번째의 결손 변이를 도입한 H쇄는, 전장 서열을 가지는 H쇄와 조합함으로써 Fab가 1개뿐인 항체(1가 항체)를 제작하는 것이 가능해져, 어피니티 평가에 유용하다.The H chain introduced with the deletion mutation of the EU numbering 118 to 215 is combined with the H chain having the full-length sequence, so that it is possible to produce an antibody (monovalent antibody) having only one Fab, which is useful for affinity evaluation.
EU 넘버링 409번째의 Arg를 Lys로 치환하는 변이, 및 EU 넘버링 435번째의 His를 Arg로 치환하는 변이는, 각각 인간 IgG1, 및 인간 IgG3의 성질에 가까워지는 것을 목적으로 한 변이이다.The mutation for substituting the EU numbering 409th Arg for Lys and the mutation for substituting the EU numbering 435th His for Arg are intended to be close to the properties of human IgG1 and human IgG3, respectively.
(3-1) 점변이에 의한 인간화 항CD3 항체의 친화성 개변(3-1) Affinity change of humanized anti-CD3 antibody by point mutation
먼저, 실시예 2에서 제작된 인간화 항인간 CD3 ε쇄 항체 서열 hCE115HA-ERY27_HE(서열번호: 55)에 대하여, FR1, FR2, FR3, CDR1, CDR2, CDR3에 점변이를 도입하여 개변 항체를 조제했다. 다음으로, 이들 개변 항체의 가용성 인간 CD3 ε쇄에 대한 친화성을 측정했다. 친화성 향상 효과가 있는 부위를 조합함으로써, 표 8에 나타내는 친화성을 가지는 개변 항체를 얻었다.First, point mutations were introduced into FR1, FR2, FR3, CDR1, CDR2 and CDR3 of the humanized anti human CD3? Chain antibody sequence hCE115HA-ERY27_HE (SEQ ID NO: 55) prepared in Example 2 to prepare a modified antibody . Next, affinity of these modified antibodies to soluble human CD3? Chain was measured. By combining sites having affinity improving effect, a modified antibody having affinity shown in Table 8 was obtained.
(3-2) 인간화 항GPC3 항체의 친화성 개변(3-2) Affinity change of humanized anti-GPC3 antibody
먼저, 실시예 2에서 제작된 항인간 GPC3 이중특이성 항체 서열 H0000-ERY27_HK(서열번호: 54)에 대하여, CDR1, CDR2, CDR3에 점변이를 도입하여 개변 항체를 조제했다. 다음으로, 이들 개변 항체의 가용성 인간 GPC3에 대한 친화성을 측정했다. 친화성 향상 효과가 있는 부위를 조합함으로써, 표 9에 나타내는 친화성을 가지는 개변 항체를 얻었다.First, point mutations were introduced into CDR1, CDR2 and CDR3 of the anti-human GPC3 bispecific antibody sequence H0000-ERY27_HK (SEQ ID NO: 54) prepared in Example 2 to prepare a modified antibody. Next, affinity of these modified antibodies to soluble human GPC3 was measured. By combining sites having affinity improving effect, a modified antibody having affinity shown in Table 9 was obtained.
(3-3) 점변이에 의한 pI 개변(3-3) pI variation due to point variation
이중특이성 항체의 상용 생산에서는 고도한 정제가 필요하다. 이온 교환 크로마토그래피를 이용하는 경우, 분자의 등전점(pI)을 개변하는 것이 유효하다고 보고되어 있다(PLoS One. 2013;8(2):e57479). 이 때문에, 실시예 2에서 제작된 인간화 항인간 GPC3 항체 서열 H0000-ERY27_HK(서열번호: 54)에 대하여, CDR1, CDR2, CDR3에 pI 개변을 고려한 점변이를 도입하여 개변 항체를 조제했다. 다음으로, 이들 개변 항체의 가용성 인간 GPC3에 대한 친화성을 측정했다.Commercial production of bispecific antibodies requires advanced purification. It has been reported that when ion exchange chromatography is used, it is effective to change the isoelectric point (pI) of a molecule (PLoS One. 2013; 8 (2): e57479). For this reason, a point mutation considering pI alteration was introduced into the CDR1, CDR2 and CDR3 of the humanized anti-human GPC3 antibody sequence H0000-ERY27_HK (SEQ ID NO: 54) prepared in Example 2 to prepare a modified antibody. Next, affinity of these modified antibodies to soluble human GPC3 was measured.
그 결과, 인간 GPC3에 대한 친화성을 유지하면서, pI를 저하시키는 것이 가능한 아미노산 개변으로서, Kabat 넘버링에 의한 19위, 43위, 53위, 61위의 아미노산이 발견되었다.As a result,
인간 GPC3에 대한 친화성이 유지되고, 또한 pI 저하 효과가 있는 부위를 조합함으로써, 표 10에 나타내는 친화성 및 pI를 가지는 항체를 얻었다.Antibodies having affinity and pI shown in Table 10 were obtained by combining sites having affinity for human GPC3 and having a pI lowering effect.
(3-4) 점변이에 의한 세포 외 매트릭스 결합능 개변(3-4) Modification of extracellular matrix binding ability by point mutation
세포 외 매트릭스(ECM) 등에 대한 비특이적 결합은 약물 동태에 영향을 줄 가능성이 보고되어 있다(MAbs. 2012 Nov-Dec;4(6):753-60). 이 때문에, 본 실시예에서 얻은 개변 항체에 대하여 ECM에 대한 결합능을 참고 실시예 4에 기재한 방법으로 실시했다. 이 결과, 인간화 항인간 CD3 ε쇄 및 항인간 GPC3 이중특이성 항체 GPC3_ERY27_hCE115(서열번호 54, 55, 56)에서는 ECM 결합능이 높다는 것이 확인되었다. 이 때문에, 실시예 3-1, 3-2, 3-3에서 검토한 인간화 항인간 CD3 ε쇄 항체 서열 hCE115HA-ERY27_HE(서열번호: 55)에 대한 임의의 점변이를 이용하여 ECM 결합능이 저감되는 조합을 검토했다. 그 결과, Kabat 넘버링에 의한 11위, 16위, 52a위, 53위, 98위 및 100위의 아미노산이 CD3 ε에 대한 친화성을 유지하면서, ECM 결합능 저하에 영향을 준다는 것을 발견하여, 인간화 항인간 CD3 ε쇄 및 항인간 GPC3 이중특이성 항체 GPC3_ERY27_hCE115 개변 항체보다도 ECM 결합능이 저감된 항체를 얻었다(표 11).Non-specific binding to the extracellular matrix (ECM), etc. has been reported to affect pharmacokinetics (MAbs. 2012 Nov-Dec; 4 (6): 753-60). For this reason, the binding ability of the modified antibody obtained in this Example to ECM was determined by the method described in Reference Example 4. As a result, it was confirmed that the ECM binding ability was high in the humanized anti-human CD3? Chain and the anti-human GPC3 bispecific antibody GPC3_ERY27_hCE115 (SEQ ID NOS: 54, 55 and 56). For this reason, the ECM binding ability is reduced by using arbitrary point mutation to the humanized anti-human CD3? Chain antibody sequence hCE115HA-ERY27_HE (SEQ ID NO: 55) studied in Examples 3-1, 3-2 and 3-3 The combination was reviewed. As a result, it was found that 11th, 16th, 52a, 53rd, 98th and 100th amino acids by Kabat numbering affects the degradation of ECM binding ability while maintaining the affinity for CD3 epsilon, Antibodies with reduced ECM binding ability were obtained from human CD3? Chain and anti-human GPC3 bispecific antibody GPC3_ERY27_hCE115 modified antibody (Table 11).
(3-5) 점변이에 의한 SuReTM ligand에 대한 결합능 개변(3-5) Binding capacity modification for SuRe TM ligand by point mutation
항체의 가변 영역 서열(VH3)에 의존하여 Protein A에 결합하는 예가 알려져 있다(J Biomol Tech. 2011 Jul;22(2):50-2). 인간화 항인간 CD3 ε쇄 및 항인간 GPC3 이중특이성 항체의 Protein A 정제에 있어서, 항CD3 항체 호모 항체를 제거하는 것은 CD3을 개재한 비특이적 반응을 억제하는 데 있어서 중요하다. 이 때문에, 항CD3 항체 호모 항체의 Protein A 결합을 억제하는 것이 바람직하다고 생각되었다. 상용 생산에 있어서는 SuReTM ligand의 사용이 상정되기 때문에, 인간화 항CD3 항체 H쇄 개변체 TR01H082-E2702GsKsc 및 TR01H084-E2702GsKsc(서열번호 398 및 399)의 CDR2에 SuReTM ligand 결합을 고려한 점변이를 도입하여 개변 항체를 조제했다. 이들 개변 항체의 SuReTM ligand에 대한 결합능은 참고 실시예 5에 기재한 방법으로 실시했다. 이 결과, Kabat 넘버링에 의한 19위, 57위, 59위의 아미노산이 CD3 ε에 대한 친화성을 유지하면서, SureTM ligand에 대한 결합능에 영향을 준다는 것을 발견하여, TR01H082-E2702GsKsc/L0011-k0(서열번호 398 및 410), 및 TR01H084-E2702GsKsc/L0011-k0(서열번호 399 및 410)과 비교해서 SuReTM ligand에 대한 결합능이 저감된 항체를 얻었다(표 12).An example of binding to Protein A depending on the variable region sequence (VH3) of the antibody is known (J Biomol Tech. 2011 Jul; 22 (2): 50-2). In Protein A purification of humanized anti-human CD3 ε chain and anti-human GPC3 bispecific antibodies, removal of anti-CD3 antibody homolog antibodies is important in inhibiting non-specific reactions mediated by CD3. Therefore, it was considered desirable to inhibit Protein A binding of the anti-CD3 antibody homolog antibody. Since in the commercial production, the use of SuRe TM ligand is assumed, by introducing a point mutation Considering SuRe TM ligand bonded to the CDR2 of the humanized anti-CD3 antibody H chain dog variants TR01H082-E2702GsKsc and TR01H084-E2702GsKsc (SEQ ID NO: 398 and 399) And a modified antibody was prepared. The binding ability of these modified antibodies to the SuRe TM ligand was carried out by the method described in Reference Example 5. As a result, it was found that the 19th, 57th and 59th amino acids by Kabat numbering affects the binding ability to the Sure TM ligand while maintaining the affinity for CD3 epsilon. Thus, TR01H082-E2702GsKsc / L0011-k0 SEQ ID NO: 398 and 410), and, as compared to the TR01H084-E2702GsKsc / L0011-k0 (SEQ ID NO: 399 and 410) to give a binding capacity is reduced antibody to SuRe TM ligand (Table 12).
(3-6) 각종 성질이 개선되는 점변이의 조합에 의한 최적화 이중특이성 항체의 제작(3-6) Optimization by combination of point mutations improving various properties Preparation of bispecific antibody
실시예 3-1부터 3-5에 기재한 각종 성질이 개선되는 점변이를 조합함으로써, 최적화된 개변 항체를 제작할 수 있다. 이와 같은 개변 항체의 예로서, 표 13에 기재된 항체를 제작하고, 실시예 1과 마찬가지의 방법을 이용하여, T 세포 의존성 세포상해(TDCC) 활성 평가에 제공했다. 그 결과를 도 4∼9에 기재했다. 이 결과, 인간화 전의 GPC3_ERY22_rCE115의 T 세포 의존적 세포상해 활성과 동등하거나 또는 그 이상의 활성을 나타내는 최적화 인간화 항인간 CD3 ε쇄 및 항인간 GPC3 이중특이성 항체를 얻었다.By combining the point mutations in which the various properties described in Examples 3-1 to 3-5 are improved, an optimized modified antibody can be produced. As an example of such a modified antibody, the antibody shown in Table 13 was prepared and provided for the evaluation of T cell dependent cytotoxic (TDCC) activity using the same method as in Example 1. [ The results are shown in Figs. As a result, an optimized humanized anti-human CD3 epsilon chain and an anti-human GPC3 bispecific antibody exhibiting activity equal to or superior to the T cell-dependent cytotoxic activity of GPC3_ERY22_rCE115 before humanization were obtained.
실시예 3-1∼3-6으로부터, 인간화 전의 GPC3_ERY22_rCE115의 T 세포 의존적 세포상해 활성과 동등하거나 또는 그 이상의 활성을 나타내는 최적화 항인간 CD3 ε쇄 및 항인간 GPC3 이중특이성 항체의 성질을 유지하는 데 있어서, 예를 들면 이하의 아미노산 잔기가 중요하다는 것이 밝혀졌다.From Examples 3-1 to 3-6, in maintaining the properties of the optimized anti-human CD3 epsilon chain and the anti-human GPC3 bispecific antibody exhibiting activity equal to or higher than the T cell-dependent cytotoxic activity of GPC3_ERY22_rCE115 before humanization , For example, the following amino acid residues are important.
항인간 CD3 ε쇄 항체에 있어서는, 예를 들면 11위의 Leu, 16위의 Gly, 52a위의 Asp, 53위의 Gln, 72위의 Ala, 78위의 Ile, 98위의 Ala, 100위의 Gly, 102위의 Ile를 들 수 있다. 항인간 GPC3 항체에 있어서는, 예를 들면, 19위의 Thr, 43위의 Glu, 52a위의 Gly, 53위의 Pro 또는 Glu, 55위의 Pro, 61위의 Glu를 들 수 있다. 또한, 공통 항체 L쇄에 있어서는, 예를 들면 25위의 Pro, 27a위의 Pro, 27b위의 Pro, 33위의 Ile, 34위의 Gln, 56위의 Arg 또는 Trp, 89위의 Tyr을 들 수 있다(모두 Kabat 넘버링에 의한다).In the anti-human CD3? Chain antibody, for example, Leu at
〔실시예 4〕 in vivo 약효의 평가[Example 4] Evaluation of drug efficacy in vivo
전술한 항체의 일부에 대하여 담암(擔癌) 모델을 이용한 in vivo 약효에 대해서도 평가했다.The in vivo drug efficacy using a gangrene cancer model was also evaluated for a part of the above-mentioned antibodies.
실시예 3-6에 기재된 in vitro의 어세이에서 세포상해 활성이 확인된 표 13에 나타낸 것 중 대표적인 항체에 대하여 in vivo의 약효의 평가가 행해졌다. in vivo의 약효 평가에 있어서는, 종양괴 형성에 의한 미소 환경의 다름이 그 결과에 줄 수 있는 영향을 고려하여, GPC3을 발현하는 양이 거의 동등함에도 불구하고 당해 항체에 의한 약효의 감수성이 상이한 2종류의 인간 암세포주, 즉 PC-10 및 NCI-H446이 이용되었다. 이들 세포주가 NOD scid 마우스에 이식되고, 종양의 형성이 확인된 NOD scid 마우스에, in vitro에서 인간 PBMC를 배양하는 것에 의해 증식시킨 T 세포가 이입되었다. 당해 마우스에 대해서 최적화 항인간 CD3 ε쇄 및 항인간 GPC3 이중특이성 항체를 투여하는 것에 의한 치료가 행해졌다(T 세포 이입 모델이라고 지칭된다).Evaluation of the pharmacological effects in vivo was performed on representative antibodies among those shown in Table 13 in which cytotoxic activity was confirmed in the assays described in Examples 3-6. Considering the influence of difference in microenvironment due to tumor formation on the result in the in vivo drug efficacy evaluation, although the amount expressing GPC3 is almost equal, the sensitivity of drug efficacy by the antibody is different 2 Kinds of human cancer cell lines, PC-10 and NCI-H446, were used. These cell lines were transplanted into NOD scid mice and NOD scid mice in which tumor formation was confirmed were transplanted with T cells grown by culturing human PBMC in vitro. Treatment with the optimized anti-human CD3? Chain and anti-human GPC3 bispecific antibody was performed on the mice (referred to as T cell entry model).
즉, 최적화 항인간 CD3 ε쇄 및 항인간 GPC3 이중특이성 항체의 PC-10 T 세포 이입 모델에 의한 약효 시험에 있어서는, 하기와 같은 시험이 행해졌다. 건강한 정상인 지원자로부터 채취한 혈액으로부터 분리된 PBMC 및 T cell activation/expansion kit/human(MACS Miltenyi biotec사)을 이용하여 T 세포의 확대 배양이 행해졌다. 인간 암세포주 PC-10 1×107 세포와, 마트리겔 기저막 매트릭스(BD사)가 혼화되어, NOD scid 마우스(니혼쿠레아, ♀, 6W)의 서혜부 피하에 이식되었다. 이식한 날을 day 0으로 했다. 마우스에는 이식 전날에 항아시알로 GM1 항체(와코순약)가 0.2mg/마리로 복강내에 투여되었다. 이식 후 13일로부터 15일째에 종양 사이즈와 체중에 따라 군 분류가 행해진 후, 재차 항아시알로 GM1 항체가 0.2mg/마리로 복강내에 투여되었다. 그 익일에 상기 확대 배양에 의해 얻어진 T 세포가 3×107 세포/마리로 복강내에 이식되었다. T 세포 이식 약 4시간 후에, 최적화 항인간 CD3 ε쇄 및 항인간 GPC3 이중특이성 항체가 1mg/kg으로 꼬리 정맥내 투여되었다. 최적화 항인간 CD3 ε쇄 및 항인간 GPC3 이중특이성 항체의 투여는 1회만 행해졌다.That is, in the drug efficacy test by the PC-10 T cell entry model of the optimized anti-human CD3? Chain and the anti-human GPC3 bispecific antibody, the following test was conducted. T cell expansion was performed using PBMC and T cell activation / expansion kit / human (MACS Miltenyi biotec) isolated from blood collected from healthy normal volunteers. 1 × 10 7 cells of human cancer cell line PC-10 and Matrigel basement membrane matrix (BD) were mixed and transplanted into the inguinal subcutaneous area of NOD scid mice (Nihonkurea, female, 6W). The day of transplantation was set as
그 결과, 최적화 항인간 CD3 ε쇄 및 항인간 GPC3 이중특이성 항체 투여군에 있어서는 용매 투여군과 비교하여 분명한 항종양 작용이 확인되었다(도 10a, b).As a result, a clear antitumor effect was confirmed in the group to which the anti-human CD3? Chain and the anti-human GPC3 bispecific antibody were administered compared with the group administered with the solvent (Fig. 10a, b).
최적화 항인간 CD3 ε쇄 및 항인간 GPC3 이중특이성 항체의 NCI-H446 T 세포 이입 모델에 의한 약효 시험도 마찬가지의 방법으로 실시했다. NCI-H446에 대해서는, 최적화 항인간 CD3 ε쇄 및 항인간 GPC3 이중특이성 항체는 5mg/kg으로 1회 꼬리 정맥내 투여되었다.The drug efficacy test by the NCI-H446 T cell entry model of the anti-human CD3 ε chain and the anti-human GPC3 bispecific antibody was also conducted in the same manner. For NCI-H446, the optimized anti-human CD3? Chain and the anti-human GPC3 bispecific antibody were administered once intravenously at 5 mg / kg.
그 결과, 최적화 항인간 CD3 ε쇄 및 항인간 GPC3 이중특이성 항체 투여군에 있어서는 용매 투여군과 비교하여 분명한 항종양 작용이 확인되었다(도 11a, b).As a result, a clear antitumor effect was confirmed in the group to which the anti-human CD3? Chain and the anti-human GPC3 bispecific antibody were administered as compared with the group administered with the solvent (Fig. 11A, b).
〔참고 실시예〕[Reference Example]
〔참고 실시예 1〕 항체의 발현 벡터의 제작 및 항체의 발현과 정제[Referential Example 1] Construction of antibody expression vector and expression and purification of antibody
아미노산 치환의 도입은 QuikChange Site-Directed Mutagenesis Kit(Stratagene), PCR 또는 In fusion Advantage PCR cloning kit(TAKARA) 등을 이용해 당업자 공지의 방법으로 행하여, 발현 벡터를 구축했다. 얻어진 발현 벡터의 염기 서열은 당업자 공지의 방법으로 결정했다. 제작한 플라스미드를 인간 태아 신암(腎癌) 세포 유래 HEK293H주(Invitrogen), 또는 FreeStyle293 세포(Invitrogen사)에, 일과성으로 도입하여, 항체의 발현을 행했다. 얻어진 배양 상청으로부터, rProtein A SepharoseTM Fast Flow(GE헬스케어)를 이용하여 당업자 공지의 방법으로, 항체를 정제했다. 정제 항체 농도는, 분광 광도계를 이용하여 280nm에서의 흡광도를 측정하고, 얻어진 값으로부터 PACE법에 의해 산출된 흡광 계수를 이용하여 항체 농도를 산출했다(Protein Science 1995; 4: 2411-2423).The introduction of the amino acid substitution was carried out by a method known in the art using QuikChange Site-Directed Mutagenesis Kit (Stratagene), PCR or In fusion Fusion PCR cloning kit (TAKARA), etc. to construct an expression vector. The nucleotide sequence of the obtained expression vector was determined by a method known in the art. The prepared plasmid was transiently transfected into HEK293H strain (Invitrogen) or FreeStyle 293 cell (Invitrogen) derived from human fetal neoplastic (renal) cancer cells to express the antibody. Obtained from the culture supernatant, rProtein A Sepharose Fast Flow TM to the person skilled in the art well known methods using a (GE Healthcare), and purifying the antibody. The purified antibody concentration was determined by measuring the absorbance at 280 nm using a spectrophotometer and calculating the antibody concentration using the extinction coefficient calculated by the PACE method (Protein Science 1995; 4: 2411-2423).
〔참고 실시예 2〕 인간 말초혈 단핵구를 이펙터 세포로서 이용한 각 피험 항체의 ADCC 활성[Reference Example 2] ADCC activity of each test antibody using human peripheral blood mononuclear cells as effector cells
각 피험 항체에 대하여, 이하의 방법에 따라 ADCC 활성을 측정했다.For each test antibody, ADCC activity was measured by the following method.
인간 말초혈 단핵구(이하, 인간 PBMC로 지칭한다)를 이펙터 세포로서 이용하여 각 피험 항체의 ADCC 활성을 이하와 같이 측정했다.The ADCC activity of each test antibody was measured as follows using human peripheral blood mononuclear cells (hereinafter referred to as human PBMC) as effector cells.
(1) 인간 PBMC 용액의 조제(1) Preparation of human PBMC solution
1000단위/ml의 헤파린 용액(노보·헤파린주 5천 단위, 노보·노디스크)이 미리 200μl 주입된 주사기를 이용하여, 츄가이제약주식회사 소속의 건강한 정상인 지원자(성인 남성)로부터 말초혈 50ml를 채취했다. PBS(-)를 이용하여 2배로 희석된 당해 말초혈을 4등분하고, 15ml의 Ficoll-Paque PLUS가 미리 주입되어 원심 조작이 행해진 Leucosep 림프구 분리관(Greiner bio-one)에 가했다. 당해 말초혈이 분주된 분리관에 2150rpm의 속도에 의해 10분간 실온에서 원심 분리의 조작을 한 후, 단핵구 분획층을 분취했다. 10% FBS를 포함하는 Dulbecco's Modified Eagle's Medium(SIGMA)(이하 10% FBS/D-MEM이라고 칭한다)에 의해 1회 당해 각 분층에 포함되는 세포를 세정한 후, 당해 세포가 10% FBS/D-MEM 중에 그 세포 밀도가 5x106 세포/ml가 되도록 현탁했다. 인큐베이터 중에 있어서 37℃에서 1시간 인큐베이팅한 후, 10% FBS/D-MEM으로 1회 세포를 세정하고, 당해 세포가 10% FBS/D-MEM 중에 그 세포 밀도가 2x106 세포/ml가 되도록 현탁했다. 당해 세포 현탁액을 표적 세포로 해서 이후의 실험에 제공했다.50 ml of peripheral blood was collected from a healthy normal human volunteer (adult male) belonging to Chugai Pharmaceutical Co., Ltd. using a syringe in which 200 μl of 1000 units / ml heparin solution (Novo-Heparin 5,000 units, Novo Nordisk) did. Peripheral blood diluted 2-fold with PBS (-) was divided into quarters, and 15 ml of Ficoll-Paque PLUS was added to a Leucosep lymphocyte separation tube (Greiner bio-one) which had been previously injected and centrifuged. After centrifugation at room temperature for 10 minutes at a rate of 2150 rpm, the mononuclear cell fraction layer was collected. After the cells contained in each layer were washed once with Dulbecco's Modified Eagle's Medium (SIGMA) (hereinafter referred to as 10% FBS / D-MEM) containing 10% FBS, the cells were washed with 10% FBS / And suspended in MEM to have a cell density of 5 x 10 < 6 > cells / ml. The cells were washed once with 10% FBS / D-MEM and incubated at 37 ° C for 1 hour in an incubator. The cells were suspended in 10% FBS / D-MEM to have a cell density of 2 × 10 6 cells / did. The cell suspension was used as a target cell for subsequent experiments.
(2) 크로뮴 유리 시험(ADCC 활성)(2) Chromium glass test (ADCC activity)
ADCC 활성을 크로뮴 릴리스법에 의한 특이적 크로뮴 유리율로 평가했다. 우선, 각 농도(0, 0.004, 0.04, 0.4, 4, 40μg/ml)로 조제한 항체 용액을 96웰 U 바닥 플레이트의 각 웰 중에 50μl씩 첨가했다. 다음으로, 표적 세포를 50μl씩 파종하고(1x104 세포/웰) 실온에서 15분간 정치했다. 각 웰 중에 (1)에서 조제한 인간 PBMC 용액 각 100μl(5x105 세포/웰)를 가한 당해 플레이트를, 5% 탄산 가스 인큐베이터 중에 있어서 37℃에서 4시간 정치한 후에, 원심 조작했다. 당해 플레이트의 각 웰 중의 100μl의 배양 상청의 방사 활성을 감마 카운터를 이용하여 측정했다. 아래 식:ADCC activity was evaluated by specific chromium liberation by the chromium release method. First, 50 μl of the antibody solution prepared at each concentration (0, 0.004, 0.04, 0.4, 4, 40 μg / ml) was added to each well of a 96 well U bottom plate. Next, 50 μl of target cells were inoculated (1 × 10 4 cells / well) and allowed to stand at room temperature for 15 minutes. The plate containing each 100 μl ( 5 × 10 5 cells / well) of the human PBMC solution prepared in (1) was allowed to stand at 37 ° C. for 4 hours in a 5% carbonic acid gas incubator and centrifuged. The radioactivity of 100 μl of culture supernatant in each well of the plate was measured using a gamma counter. The following expression:
특이적 크로뮴 유리율(%) = (A-C)×100/(B-C)Specific chromium free rate (%) = (A-C) x 100 / (BC)
에 기초하여 특이적 크로뮴 유리율을 구했다.The specific chromium free rate was determined.
상기 식에 있어서, A는 각 웰 중의 100μl의 배양 상청의 방사 활성(cpm)의 평균값을 나타낸다. 또한, B는 표적 세포에 100μl의 2% NP-40 수용액(Nonidet P-40, 나카라이테스크) 및 50μl의 10% FBS/D-MEM 배지를 첨가한 웰 중의 100μl의 배양 상청의 방사 활성(cpm)의 평균값을 나타낸다. 또, C는 표적 세포에 10% FBS/D-MEM 배지를 150μl 첨가한 웰 중의 100μl의 배양 상청의 방사 활성(cpm)의 평균값을 나타낸다. 시험은 triplicate로 실시하고, 각 피험 항체의 ADCC 활성이 반영되는 상기 시험에 있어서의 특이적 크로뮴 유리율(%)의 평균값 및 표준 편차를 산출했다.In the above formula, A represents the average value of the radioactivity (cpm) of 100 μl of the culture supernatant in each well. B also shows the radioactivity (cpm) of 100 μl of culture supernatant in wells to which 100 μl of a 2% NP-40 aqueous solution (Nonidet P-40, Nacalai Tesque) and 50 μl of 10% FBS / D- ). C represents the average value of radioactivity (cpm) of 100 μl of culture supernatant in wells to which 150 μl of 10% FBS / D-MEM medium was added to the target cells. The test was carried out in triplicate, and the average value and standard deviation of the specific chromium free rate (%) in the above test in which the ADCC activity of each test antibody was reflected were calculated.
〔참고 실시예 3〕 시차 주사형 형광 정량법에 의한 개변 항체의 Tm 평가[Reference Example 3] Tm evaluation of the modified antibody by the differential scanning fluorescence quantification method
본 검토에서는, Rotor-Gene Q(QIAGEN)를 이용한 시차 주사형 형광 정량법을 이용하여 개변 항체의 Tm(열변성 온도)을 평가했다. 한편, 본 수법은, 항체의 열안정성 평가법으로서 널리 알려져 있는 시차 주사형 열량계를 이용한 Tm 평가와 양호한 상관을 나타낸다는 것이 이미 보고되어 있다(Journal of Pharmaceutical Science 2010; 4: 1707-1720).In this study, Tm (thermal denaturation temperature) of the modified antibody was evaluated using a time-lance scanning fluorescence assay using Rotor-Gene Q (QIAGEN). On the other hand, this method has already been reported to exhibit a good correlation with the Tm evaluation using a differential scanning calorimeter widely known as a method for evaluating the thermal stability of an antibody (Journal of Pharmaceutical Science 2010; 4: 1707-1720).
5000배 농도의 SYPROTM orange(Molecular Probes)를 PBS(Sigma)에 의해 희석 후, 항체 용액과 혼화하는 것에 의해 측정 샘플을 조제했다. 각 샘플을 20μL씩 측정용 튜브에 세팅하고, 240℃/hr의 승온 속도로 30℃에서 99℃까지 온도를 상승시켰다. 승온도에 수반되는 형광 변화를 470nm(여기 파장)/555nm(형광 파장)에 있어서 검출을 행했다.SYPRO ™ orange (Molecular Probes) at a concentration of 5,000 was diluted with PBS (Sigma), and then mixed with the antibody solution to prepare a measurement sample. 20 μL of each sample was set in a measuring tube, and the temperature was raised from 30 ° C. to 99 ° C. at a heating rate of 240 ° C./hr. Fluorescence change accompanied by the temperature rise was detected at 470 nm (excitation wavelength) / 555 nm (fluorescence wavelength).
데이터는 Rotor-Gene Q Series Software(QIAGEN)를 이용해 형광 전이가 확인된 온도를 산출하여, 이 값을 Tm값으로 했다.Data was obtained by using a Rotor-Gene Q Series Software (QIAGEN) to calculate the temperature at which the fluorescence transition was confirmed, and this value was taken as the Tm value.
〔참고 실시예 4〕 ECM 결합능 측정[Reference Example 4] Measurement of ECM binding capacity
WO2012093704에 기재된 방법에 준하여 실시했다. 구체적으로는, TBS(TaKaRa, #T903)로 BD Matrigel(BD Biosciences, #356237)을 2mg/mL로 조정하고, 이것을 측정용 96웰 플레이트(Meso Scale Discovery, #L15XB-3(High Bind))에 5μL씩 분주한 후, 차가운 곳에서 하룻밤 정치했다. 계속해서 각 웰에 150μL의 ECL blocking buffer(0.05% Tween20, 0.5% BSA, 0.01% sodium azide를 포함하는 PBS)를 가하고 실온에서 2시간 이상 정치했다.Was carried out according to the method described in WO2012093704. Specifically, BD Matrigel (BD Biosciences, # 356237) was adjusted to 2 mg / mL with TBS (TaKaRa, # T903) and this was added to a 96-well plate for measurement (Meso Scale Discovery, # L15XB-3 After dispensing 5 μL each, they were allowed to stand overnight in a cold place. Subsequently, 150 μL of ECL blocking buffer (PBS containing 0.05
Goat anti-human IgG(γ)(Invitrogen, #628400)를 MSD SULFO-TAG NHS Ester(Meso Scale Discovery, #R91AN-2)의 취급 설명서에 따라 루테늄화했다. 이것을 ECL dilution buffer(0.01% Tween20, 0.1% BSA, 0.01% sodium azide를 포함하는 PBS)를 이용하여 종농도 2μg/mL가 되도록 희석했다. 또한, 표준 항체 및 피검 항체를 PBS-T(0.05% Tween20, 0.01% sodium azide를 포함하는 PBS)로 종농도 3μg/mL가 되도록 희석했다.Goat anti-human IgG (γ) (Invitrogen, # 628400) was ruthenated according to the instructions of MSD SULFO-TAG NHS Ester (Meso Scale Discovery, # R91AN-2). This was diluted to a final concentration of 2 μg / mL using an ECL dilution buffer (0.01
반응용 96웰 플레이트(Thermo scientific, Nunc #145399)에, 10μL의 ECL dilution buffer, 20μL의 표준 항체 및 피검 항체(3μg/mL), 30μL의 루테늄화 항체(2μg/mL)를 순차적으로 첨가하고, 차광하, 실온에서 교반하면서 1시간 반응시켰다.To the reaction 96-well plate (Thermo scientific, Nunc # 145399), 10 μL of ECL dilution buffer, 20 μL of standard antibody and 3 μg / mL of antibody to be tested and 30 μL of ruthenated antibody (2 μg / mL) The mixture was allowed to react for 1 hour while shaking under shaking at room temperature.
측정용 96웰 플레이트로부터 ECL blocking buffer를 전도 제거하고, 반응용 96웰 플레이트로부터 50μL의 샘플 용액을 첨가하고, 차광하 실온에서 1시간 정치했다. 이후, 측정용 96웰 플레이트로부터 샘플 용액을 전도 제거하고, 2x T buffer(4x MSD Read Buffer T(Meso Scale Discovery)를 ECL dilution buffer로 2배로 희석한 것)를 150μL 가하여 즉시 ECL 측정을 실시했다. 측정에는 SECTOR Imager 2400(Meso Scale Discovery)을 사용했다.The ECL blocking buffer was removed from the 96 well plate for measurement, and 50 μL of the sample solution was added from the reaction 96-well plate, and the mixture was allowed to stand at room temperature for 1 hour under light shielding. Thereafter, the sample solution was removed from the 96 well plate for measurement, and 150 μL of a 2 × T buffer (4 × MSD Read Buffer T (Meso Scale Discovery) diluted 2-fold with an ECL dilution buffer) was added to perform ECL measurement immediately. SECTOR Imager 2400 (Meso Scale Discovery) was used for the measurement.
해석은 피검 항체의 형광 강도값을 표준 항체의 값으로 나누고, 표준 항체를 1로 했을 때의 강도를 산출하여 비교했다.In the analysis, the fluorescence intensity of the antibody to be tested was divided by the value of the standard antibody, and the intensity when the standard antibody was 1 was calculated and compared.
〔참고 실시예 5〕 SuReTM ligand 결합능 측정[Reference Example 5] Measurement of binding ability of SuRe TM ligand
SuReTM ligand에 대한 결합능 측정에는 BiacoreTM-T200(GE헬스케어·재팬)을 사용했다. 런닝 버퍼에는 HBS-EP+(GE헬스케어·재팬)를 이용하고, 아민 커플링 키트(GE헬스케어·재팬)를 이용하여, Mab Select SuReTM Ligand(GE헬스케어·재팬)를 CM5칩(카복시메틸덱스트란 피복칩)에 공유 결합시켰다. 애널라이트로서 이용한 항체는 HBS-EP+를 이용하여 5μg/mL로 조제했다. 측정은 우선 유속 10μL/min에서, 5μg/mL의 항체 용액을 3min 인젝션함으로써 반응시키고, 그 후 HBS-EP+로 전환하여 0.5min 흘린 후의 리스폰스(RU)를 측정했다. 측정 종료 후, 10mM Gly-HCl, pH 1.5로 세정하여, 센서칩을 재생했다. 대조 플로 셀에 있어서는, 칩상에 리간드를 공유 결합시키지 않고서 마찬가지의 실험을 행하여, 양자의 리스폰스(RU)의 차를 취하는 것에 의해 SuReTM ligand에 대한 결합능을 해석했다.Biacore TM -T200 (GE Healthcare Japan) was used to measure binding ability to SuRe TM ligand. The running buffer is using the HBS-EP + (GE Healthcare, Japan) for use, and the amine coupling kit (GE Healthcare, Japan), Mab Select SuRe TM Ligand (GE Healthcare, Japan) to CM5 chips (carboxy methyl Dextran-coated chips). Antibodies used as analytes were prepared at 5 μg / mL using HBS-EP +. The measurement was carried out by first injecting 5 μg / mL of the antibody solution at a flow rate of 10 μL / min for 3 min, and then converting to HBS-EP +, and measuring the response (RU) after 0.5 min flow. After completion of the measurement, the chip was washed with 10 mM Gly-HCl, pH 1.5, and the sensor chip was regenerated. In the control flow cell, the binding ability to the SuRe TM ligand was analyzed by performing a similar experiment without covalently bonding the ligand on the chip to take a difference between the response (RU) of the two.
본 명세서 중의 서열번호와 대응하는 서열을 아래의 표에 나타낸다.Sequences corresponding to the sequence numbers in the present specification are shown in the following table.
본 발명에 의해, BiTE가 가지는 강한 항종양 활성과, 암항원 비의존적으로 사이토카인 폭풍 등을 유도하지 않는다는 안전성상의 우수한 성질이 유지되고, 또한 긴 혈중 반감기를 가지는 새로운 다중특이성 항원 결합 분자가 제공되었다. 본 발명의 항원 결합 분자를 유효 성분으로서 포함하는 세포상해 유도제는 글리피칸 3 발현 세포, 당해 세포를 포함하는 종양 조직을 표적으로 해서 세포상해를 유도할 수 있다. 본 발명의 다중특이성 항원 결합 분자가 환자에게 투여된 경우, 안전성이 높을 뿐만 아니라, 신체적 부담이 적고 편리성도 높다고 하는, 바람직한 치료를 할 수 있게 된다.According to the present invention, a novel multispecific antigen-binding molecule having a long half-life is provided, which maintains a strong safety property that does not induce a strong antitumor activity of BiTE and a cytokine storm in a cancer antigen-independent manner . The cytotoxic inducer containing the antigen-binding molecule of the present invention as an active ingredient can induce cytotoxicity by targeting a glycopecan-3 expressing cell and a tumor tissue containing the cell. When the multispecific antigen binding molecule of the present invention is administered to a patient, it is possible to provide a preferable treatment not only having high safety but also low physical burden and high convenience.
SEQUENCE LISTING
<110> CHUGAI SEIYAKU KABUSHIKI KAISHA
<120> THERAPEUTIC AGENT THAT INDUCES CYTOTOXICITY
<130> C1-A1408P
<150> JP 2014-197315
<151> 2014-09-26
<160> 432
<170> PatentIn version 3.5
<210> 1
<211> 2398
<212> DNA
<213> Homo sapiens
<400> 1
agccccgccc tgccccgcgc cgccaagcgg ttcccgccct cgcccagcgc ccaggtagct 60
gcgaggaaac ttttgcagcg gctgggtagc agcacgtctc ttgctcctca gggccactgc 120
caggcttgcc gagtcctggg actgctctcg ctccggctgc cactctcccg cgctctccta 180
gctccctgcg aagcaggatg gccgggaccg tgcgcaccgc gtgcttggtg gtggcgatgc 240
tgctcagctt ggacttcccg ggacaggcgc agcccccgcc gccgccgccg gacgccacct 300
gtcaccaagt ccgctccttc ttccagagac tgcagcccgg actcaagtgg gtgccagaaa 360
ctcccgtgcc aggatcagat ttgcaagtat gtctccctaa gggcccaaca tgctgctcaa 420
gaaagatgga agaaaaatac caactaacag cacgattgaa catggaacag ctgcttcagt 480
ctgcaagtat ggagctcaag ttcttaatta ttcagaatgc tgcggttttc caagaggcct 540
ttgaaattgt tgttcgccat gccaagaact acaccaatgc catgttcaag aacaactacc 600
caagcctgac tccacaagct tttgagtttg tgggtgaatt tttcacagat gtgtctctct 660
acatcttggg ttctgacatc aatgtagatg acatggtcaa tgaattgttt gacagcctgt 720
ttccagtcat ctatacccag ctaatgaacc caggcctgcc tgattcagcc ttggacatca 780
atgagtgcct ccgaggagca agacgtgacc tgaaagtatt tgggaatttc cccaagctta 840
ttatgaccca ggtttccaag tcactgcaag tcactaggat cttccttcag gctctgaatc 900
ttggaattga agtgatcaac acaactgatc acctgaagtt cagtaaggac tgtggccgaa 960
tgctcaccag aatgtggtac tgctcttact gccagggact gatgatggtt aaaccctgtg 1020
gcggttactg caatgtggtc atgcaaggct gtatggcagg tgtggtggag attgacaagt 1080
actggagaga atacattctg tcccttgaag aacttgtgaa tggcatgtac agaatctatg 1140
acatggagaa cgtactgctt ggtctctttt caacaatcca tgattctatc cagtatgtcc 1200
agaagaatgc aggaaagctg accaccactg aaactgagaa gaaaatatgg cacttcaaat 1260
atcctatctt cttcctgtgt atagggctag acttacagat tggcaagtta tgtgcccatt 1320
ctcaacaacg ccaatataga tctgcttatt atcctgaaga tctctttatt gacaagaaag 1380
tattaaaagt tgctcatgta gaacatgaag aaaccttatc cagccgaaga agggaactaa 1440
ttcagaagtt gaagtctttc atcagcttct atagtgcttt gcctggctac atctgcagcc 1500
atagccctgt ggcggaaaac gacacccttt gctggaatgg acaagaactc gtggagagat 1560
acagccaaaa ggcagcaagg aatggaatga aaaaccagtt caatctccat gagctgaaaa 1620
tgaagggccc tgagccagtg gtcagtcaaa ttattgacaa actgaagcac attaaccagc 1680
tcctgagaac catgtctatg cccaaaggta gagttctgga taaaaacctg gatgaggaag 1740
ggtttgaaag tggagactgc ggtgatgatg aagatgagtg cattggaggc tctggtgatg 1800
gaatgataaa agtgaagaat cagctccgct tccttgcaga actggcctat gatctggatg 1860
tggatgatgc gcctggaaac agtcagcagg caactccgaa ggacaacgag ataagcacct 1920
ttcacaacct cgggaacgtt cattccccgc tgaagcttct caccagcatg gccatctcgg 1980
tggtgtgctt cttcttcctg gtgcactgac tgcctggtgc ccagcacatg tgctgcccta 2040
cagcaccctg tggtcttcct cgataaaggg aaccactttc ttattttttt ctattttttt 2100
ttttttgtta tcctgtatac ctcctccagc catgaagtag aggactaacc atgtgttatg 2160
ttttcgaaaa tcaaatggta tcttttggag gaagatacat tttagtggta gcatatagat 2220
tgtccttttg caaagaaaga aaaaaaacca tcaagttgtg ccaaattatt ctcctatgtt 2280
tggctgctag aacatggtta ccatgtcttt ctctctcact ccctcccttt ctatcgttct 2340
ctctttgcat ggatttcttt gaaaaaaaat aaattgctca aataaaaaaa aaaaaaaa 2398
<210> 2
<211> 603
<212> PRT
<213> Homo sapiens
<400> 2
Met Ala Gly Thr Val Arg Thr Ala Cys Leu Val Val Ala Met Leu Leu
1 5 10 15
Ser Leu Asp Phe Pro Gly Gln Ala Gln Pro Pro Pro Pro Pro Pro Asp
20 25 30
Ala Thr Cys His Gln Val Arg Ser Phe Phe Gln Arg Leu Gln Pro Gly
35 40 45
Leu Lys Trp Val Pro Glu Thr Pro Val Pro Gly Ser Asp Leu Gln Val
50 55 60
Cys Leu Pro Lys Gly Pro Thr Cys Cys Ser Arg Lys Met Glu Glu Lys
65 70 75 80
Tyr Gln Leu Thr Ala Arg Leu Asn Met Glu Gln Leu Leu Gln Ser Ala
85 90 95
Ser Met Glu Leu Lys Phe Leu Ile Ile Gln Asn Ala Ala Val Phe Gln
100 105 110
Glu Ala Phe Glu Ile Val Val Arg His Ala Lys Asn Tyr Thr Asn Ala
115 120 125
Met Phe Lys Asn Asn Tyr Pro Ser Leu Thr Pro Gln Ala Phe Glu Phe
130 135 140
Val Gly Glu Phe Phe Thr Asp Val Ser Leu Tyr Ile Leu Gly Ser Asp
145 150 155 160
Ile Asn Val Asp Asp Met Val Asn Glu Leu Phe Asp Ser Leu Phe Pro
165 170 175
Val Ile Tyr Thr Gln Leu Met Asn Pro Gly Leu Pro Asp Ser Ala Leu
180 185 190
Asp Ile Asn Glu Cys Leu Arg Gly Ala Arg Arg Asp Leu Lys Val Phe
195 200 205
Gly Asn Phe Pro Lys Leu Ile Met Thr Gln Val Ser Lys Ser Leu Gln
210 215 220
Val Thr Arg Ile Phe Leu Gln Ala Leu Asn Leu Gly Ile Glu Val Ile
225 230 235 240
Asn Thr Thr Asp His Leu Lys Phe Ser Lys Asp Cys Gly Arg Met Leu
245 250 255
Thr Arg Met Trp Tyr Cys Ser Tyr Cys Gln Gly Leu Met Met Val Lys
260 265 270
Pro Cys Gly Gly Tyr Cys Asn Val Val Met Gln Gly Cys Met Ala Gly
275 280 285
Val Val Glu Ile Asp Lys Tyr Trp Arg Glu Tyr Ile Leu Ser Leu Glu
290 295 300
Glu Leu Val Asn Gly Met Tyr Arg Ile Tyr Asp Met Glu Asn Val Leu
305 310 315 320
Leu Gly Leu Phe Ser Thr Ile His Asp Ser Ile Gln Tyr Val Gln Lys
325 330 335
Asn Ala Gly Lys Leu Thr Thr Thr Glu Thr Glu Lys Lys Ile Trp His
340 345 350
Phe Lys Tyr Pro Ile Phe Phe Leu Cys Ile Gly Leu Asp Leu Gln Ile
355 360 365
Gly Lys Leu Cys Ala His Ser Gln Gln Arg Gln Tyr Arg Ser Ala Tyr
370 375 380
Tyr Pro Glu Asp Leu Phe Ile Asp Lys Lys Val Leu Lys Val Ala His
385 390 395 400
Val Glu His Glu Glu Thr Leu Ser Ser Arg Arg Arg Glu Leu Ile Gln
405 410 415
Lys Leu Lys Ser Phe Ile Ser Phe Tyr Ser Ala Leu Pro Gly Tyr Ile
420 425 430
Cys Ser His Ser Pro Val Ala Glu Asn Asp Thr Leu Cys Trp Asn Gly
435 440 445
Gln Glu Leu Val Glu Arg Tyr Ser Gln Lys Ala Ala Arg Asn Gly Met
450 455 460
Lys Asn Gln Phe Asn Leu His Glu Leu Lys Met Lys Gly Pro Glu Pro
465 470 475 480
Val Val Ser Gln Ile Ile Asp Lys Leu Lys His Ile Asn Gln Leu Leu
485 490 495
Arg Thr Met Ser Met Pro Lys Gly Arg Val Leu Asp Lys Asn Leu Asp
500 505 510
Glu Glu Gly Phe Glu Ser Gly Asp Cys Gly Asp Asp Glu Asp Glu Cys
515 520 525
Ile Gly Gly Ser Gly Asp Gly Met Ile Lys Val Lys Asn Gln Leu Arg
530 535 540
Phe Leu Ala Glu Leu Ala Tyr Asp Leu Asp Val Asp Asp Ala Pro Gly
545 550 555 560
Asn Ser Gln Gln Ala Thr Pro Lys Asp Asn Glu Ile Ser Thr Phe His
565 570 575
Asn Leu Gly Asn Val His Ser Pro Leu Lys Leu Leu Thr Ser Met Ala
580 585 590
Ile Ser Val Val Cys Phe Phe Phe Leu Val His
595 600
<210> 3
<211> 19
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 3
Met Gly Trp Ser Cys Ile Ile Leu Phe Leu Val Ala Thr Ala Thr Gly
1 5 10 15
Val His Ser
<210> 4
<211> 141
<212> PRT
<213> Homo sapiens
<400> 4
Asp Ile Gln Asn Pro Asp Pro Ala Val Tyr Gln Leu Arg Asp Ser Lys
1 5 10 15
Ser Ser Asp Lys Ser Val Cys Leu Phe Thr Asp Phe Asp Ser Gln Thr
20 25 30
Asn Val Ser Gln Ser Lys Asp Ser Asp Val Tyr Ile Thr Asp Lys Thr
35 40 45
Val Leu Asp Met Arg Ser Met Asp Phe Lys Ser Asn Ser Ala Val Ala
50 55 60
Trp Ser Asn Lys Ser Asp Phe Ala Cys Ala Asn Ala Phe Asn Asn Ser
65 70 75 80
Ile Ile Pro Glu Asp Thr Phe Phe Pro Ser Pro Glu Ser Ser Cys Asp
85 90 95
Val Lys Leu Val Glu Lys Ser Phe Glu Thr Asp Thr Asn Leu Asn Phe
100 105 110
Gln Asn Leu Ser Val Ile Gly Phe Arg Ile Leu Leu Leu Lys Val Ala
115 120 125
Gly Phe Asn Leu Leu Met Thr Leu Arg Leu Trp Ser Ser
130 135 140
<210> 5
<211> 179
<212> PRT
<213> Homo sapiens
<400> 5
Glu Asp Leu Lys Asn Val Phe Pro Pro Glu Val Ala Val Phe Glu Pro
1 5 10 15
Ser Glu Ala Glu Ile Ser His Thr Gln Lys Ala Thr Leu Val Cys Leu
20 25 30
Ala Thr Gly Phe Tyr Pro Asp His Val Glu Leu Ser Trp Trp Val Asn
35 40 45
Gly Lys Glu Val His Ser Gly Val Ser Thr Asp Pro Gln Pro Leu Lys
50 55 60
Glu Gln Pro Ala Leu Asn Asp Ser Arg Tyr Cys Leu Ser Ser Arg Leu
65 70 75 80
Arg Val Ser Ala Thr Phe Trp Gln Asn Pro Arg Asn His Phe Arg Cys
85 90 95
Gln Val Gln Phe Tyr Gly Leu Ser Glu Asn Asp Glu Trp Thr Gln Asp
100 105 110
Arg Ala Lys Pro Val Thr Gln Ile Val Ser Ala Glu Ala Trp Gly Arg
115 120 125
Ala Asp Cys Gly Phe Thr Ser Glu Ser Tyr Gln Gln Gly Val Leu Ser
130 135 140
Ala Thr Ile Leu Tyr Glu Ile Leu Leu Gly Lys Ala Thr Leu Tyr Ala
145 150 155 160
Val Leu Val Ser Ala Leu Val Leu Met Ala Met Val Lys Arg Lys Asp
165 170 175
Ser Arg Gly
<210> 6
<211> 173
<212> PRT
<213> Homo sapiens
<400> 6
Asp Lys Gln Leu Asp Ala Asp Val Ser Pro Lys Pro Thr Ile Phe Leu
1 5 10 15
Pro Ser Ile Ala Glu Thr Lys Leu Gln Lys Ala Gly Thr Tyr Leu Cys
20 25 30
Leu Leu Glu Lys Phe Phe Pro Asp Val Ile Lys Ile His Trp Gln Glu
35 40 45
Lys Lys Ser Asn Thr Ile Leu Gly Ser Gln Glu Gly Asn Thr Met Lys
50 55 60
Thr Asn Asp Thr Tyr Met Lys Phe Ser Trp Leu Thr Val Pro Glu Lys
65 70 75 80
Ser Leu Asp Lys Glu His Arg Cys Ile Val Arg His Glu Asn Asn Lys
85 90 95
Asn Gly Val Asp Gln Glu Ile Ile Phe Pro Pro Ile Lys Thr Asp Val
100 105 110
Ile Thr Met Asp Pro Lys Asp Asn Cys Ser Lys Asp Ala Asn Asp Thr
115 120 125
Leu Leu Leu Gln Leu Thr Asn Thr Ser Ala Tyr Tyr Met Tyr Leu Leu
130 135 140
Leu Leu Leu Lys Ser Val Val Tyr Phe Ala Ile Ile Thr Cys Cys Leu
145 150 155 160
Leu Arg Arg Thr Ala Phe Cys Cys Asn Gly Glu Lys Ser
165 170
<210> 7
<211> 204
<212> PRT
<213> Homo sapiens
<400> 7
Lys Gln Leu Asp Ala Asp Val Ser Pro Lys Pro Thr Ile Phe Leu Pro
1 5 10 15
Ser Ile Ala Glu Thr Lys Leu Gln Lys Ala Gly Thr Tyr Leu Cys Leu
20 25 30
Leu Glu Lys Phe Phe Pro Asp Ile Ile Lys Ile His Trp Gln Glu Lys
35 40 45
Lys Ser Asn Thr Ile Leu Gly Ser Gln Glu Gly Asn Thr Met Lys Thr
50 55 60
Asn Asp Thr Tyr Met Lys Phe Ser Trp Leu Thr Val Pro Glu Glu Ser
65 70 75 80
Leu Asp Lys Glu His Arg Cys Ile Val Arg His Glu Asn Asn Lys Asn
85 90 95
Gly Ile Asp Gln Glu Ile Ile Phe Pro Pro Ile Lys Thr Asp Val Thr
100 105 110
Thr Val Asp Pro Lys Asp Ser Tyr Ser Lys Asp Ala Asn Asp Val Thr
115 120 125
Thr Val Asp Pro Lys Tyr Asn Tyr Ser Lys Asp Ala Asn Asp Val Ile
130 135 140
Thr Met Asp Pro Lys Asp Asn Trp Ser Lys Asp Ala Asn Asp Thr Leu
145 150 155 160
Leu Leu Gln Leu Thr Asn Thr Ser Ala Tyr Tyr Met Tyr Leu Leu Leu
165 170 175
Leu Leu Lys Ser Val Val Tyr Phe Ala Ile Ile Thr Cys Cys Leu Leu
180 185 190
Gly Arg Thr Ala Phe Cys Cys Asn Gly Glu Lys Ser
195 200
<210> 8
<211> 177
<212> PRT
<213> Homo sapiens
<400> 8
Pro Ser Tyr Thr Gly Gly Tyr Ala Asp Lys Leu Ile Phe Gly Lys Gly
1 5 10 15
Thr Arg Val Thr Val Glu Pro Arg Ser Gln Pro His Thr Lys Pro Ser
20 25 30
Val Phe Val Met Lys Asn Gly Thr Asn Val Ala Cys Leu Val Lys Glu
35 40 45
Phe Tyr Pro Lys Asp Ile Arg Ile Asn Leu Val Ser Ser Lys Lys Ile
50 55 60
Thr Glu Phe Asp Pro Ala Ile Val Ile Ser Pro Ser Gly Lys Tyr Asn
65 70 75 80
Ala Val Lys Leu Gly Lys Tyr Glu Asp Ser Asn Ser Val Thr Cys Ser
85 90 95
Val Gln His Asp Asn Lys Thr Val His Ser Thr Asp Phe Glu Val Lys
100 105 110
Thr Asp Ser Thr Asp His Val Lys Pro Lys Glu Thr Glu Asn Thr Lys
115 120 125
Gln Pro Ser Lys Ser Cys His Lys Pro Lys Ala Ile Val His Thr Glu
130 135 140
Lys Val Asn Met Met Ser Leu Thr Val Leu Gly Leu Arg Met Leu Phe
145 150 155 160
Ala Lys Thr Val Ala Val Asn Phe Leu Leu Thr Ala Lys Leu Phe Phe
165 170 175
Leu
<210> 9
<211> 1311
<212> DNA
<213> Homo sapiens
<400> 9
agtctagctg ctgcacaggc tggctggctg gctggctgct aagggctgct ccacgctttt 60
gccggaggac agagactgac atggaacagg ggaagggcct ggctgtcctc atcctggcta 120
tcattcttct tcaaggtact ttggcccagt caatcaaagg aaaccacttg gttaaggtgt 180
atgactatca agaagatggt tcggtacttc tgacttgtga tgcagaagcc aaaaatatca 240
catggtttaa agatgggaag atgatcggct tcctaactga agataaaaaa aaatggaatc 300
tgggaagtaa tgccaaggac cctcgaggga tgtatcagtg taaaggatca cagaacaagt 360
caaaaccact ccaagtgtat tacagaatgt gtcagaactg cattgaacta aatgcagcca 420
ccatatctgg ctttctcttt gctgaaatcg tcagcatttt cgtccttgct gttggggtct 480
acttcattgc tggacaggat ggagttcgcc agtcgagagc ttcagacaag cagactctgt 540
tgcccaatga ccagctctac cagcccctca aggatcgaga agatgaccag tacagccacc 600
ttcaaggaaa ccagttgagg aggaattgaa ctcaggactc agagtagtcc aggtgttctc 660
ctcctattca gttcccagaa tcaaagcaat gcattttgga aagctcctag cagagagact 720
ttcagcccta aatctagact caaggttccc agagatgaca aatggagaag aaaggccatc 780
agagcaaatt tgggggtttc tcaaataaaa taaaaataaa aacaaatact gtgtttcaga 840
agcgccacct attggggaaa attgtaaaag aaaaatgaaa agatcaaata accccctgga 900
tttgaatata attttttgtg ttgtaatttt tatttcgttt ttgtataggt tataattcac 960
atggctcaaa tattcagtga aagctctccc tccaccgcca tcccctgcta cccagtgacc 1020
ctgttgccct cttcagagac aaattagttt ctcttttttt tttttttttt tttttttttg 1080
agacagtctg gctctgtcac ccaggctgaa atgcagtggc accatctcgg ctcactgcaa 1140
cctctgcctc ctgggttcaa gcgattctcc tgcctcagcc tcccgggcag ctgggattac 1200
aggcacacac taccacacct ggctaatttt tgtattttta gtagagacag ggttttgctc 1260
tgttggccaa gctggtctcg aactcctgac ctcaagtgat ccgcccgcct c 1311
<210> 10
<211> 771
<212> DNA
<213> Homo sapiens
<400> 10
agagaagcag acatcttcta gttcctcccc cactctcctc tttccggtac ctgtgagtca 60
gctaggggag ggcagctctc acccaggctg atagttcggt gacctggctt tatctactgg 120
atgagttccg ctgggagatg gaacatagca cgtttctctc tggcctggta ctggctaccc 180
ttctctcgca agtgagcccc ttcaagatac ctatagagga acttgaggac agagtgtttg 240
tgaattgcaa taccagcatc acatgggtag agggaacggt gggaacactg ctctcagaca 300
ttacaagact ggacctggga aaacgcatcc tggacccacg aggaatatat aggtgtaatg 360
ggacagatat atacaaggac aaagaatcta ccgtgcaagt tcattatcga atgtgccaga 420
gctgtgtgga gctggatcca gccaccgtgg ctggcatcat tgtcactgat gtcattgcca 480
ctctgctcct tgctttggga gtcttctgct ttgctggaca tgagactgga aggctgtctg 540
gggctgccga cacacaagct ctgttgagga atgaccaggt ctatcagccc ctccgagatc 600
gagatgatgc tcagtacagc caccttggag gaaactgggc tcggaacaag tgaacctgag 660
actggtggct tctagaagca gccattacca actgtacctt cccttcttgc tcagccaata 720
aatatatcct ctttcactca gaaaaaaaaa aaaaaaaaaa aaaaaaaaaa a 771
<210> 11
<211> 1534
<212> DNA
<213> Homo sapiens
<400> 11
tattgtcaga gtcctcttgt ttggccttct aggaaggctg tgggacccag ctttcttcaa 60
ccagtccagg tggaggcctc tgccttgaac gtttccaagt gaggtaaaac ccgcaggccc 120
agaggcctct ctacttcctg tgtggggttc agaaaccctc ctcccctccc agcctcaggt 180
gcctgcttca gaaaatgaag tagtaagtct gctggcctcc gccatcttag taaagtaaca 240
gtcccatgaa acaaagatgc agtcgggcac tcactggaga gttctgggcc tctgcctctt 300
atcagttggc gtttgggggc aagatggtaa tgaagaaatg ggtggtatta cacagacacc 360
atataaagtc tccatctctg gaaccacagt aatattgaca tgccctcagt atcctggatc 420
tgaaatacta tggcaacaca atgataaaaa cataggcggt gatgaggatg ataaaaacat 480
aggcagtgat gaggatcacc tgtcactgaa ggaattttca gaattggagc aaagtggtta 540
ttatgtctgc taccccagag gaagcaaacc agaagatgcg aacttttatc tctacctgag 600
ggcaagagtg tgtgagaact gcatggagat ggatgtgatg tcggtggcca caattgtcat 660
agtggacatc tgcatcactg ggggcttgct gctgctggtt tactactgga gcaagaatag 720
aaaggccaag gccaagcctg tgacacgagg agcgggtgct ggcggcaggc aaaggggaca 780
aaacaaggag aggccaccac ctgttcccaa cccagactat gagcccatcc ggaaaggcca 840
gcgggacctg tattctggcc tgaatcagag acgcatctga ccctctggag aacactgcct 900
cccgctggcc caggtctcct ctccagtccc cctgcgactc cctgtttcct gggctagtct 960
tggaccccac gagagagaat cgttcctcag cctcatggtg aactcgcgcc ctccagcctg 1020
atcccccgct ccctcctccc tgccttctct gctggtaccc agtcctaaaa tattgctgct 1080
tcctcttcct ttgaagcatc atcagtagtc acaccctcac agctggcctg ccctcttgcc 1140
aggatattta tttgtgctat tcactccctt ccctttggat gtaacttctc cgttcagttc 1200
cctccttttc ttgcatgtaa gttgtccccc atcccaaagt attccatcta cttttctatc 1260
gccgtcccct tttgcagccc tctctgggga tggactgggt aaatgttgac agaggccctg 1320
ccccgttcac agatcctggc cctgagccag ccctgtgctc ctccctcccc caacactccc 1380
taccaacccc ctaatcccct actccctcca ccccccctcc actgtaggcc actggatggt 1440
catttgcatc tccgtaaatg tgctctgctc ctcagctgag agagaaaaaa ataaactgta 1500
tttggctgca agaaaaaaaa aaaaaaaaaa aaaa 1534
<210> 12
<211> 182
<212> PRT
<213> Homo sapiens
<400> 12
Met Glu Gln Gly Lys Gly Leu Ala Val Leu Ile Leu Ala Ile Ile Leu
1 5 10 15
Leu Gln Gly Thr Leu Ala Gln Ser Ile Lys Gly Asn His Leu Val Lys
20 25 30
Val Tyr Asp Tyr Gln Glu Asp Gly Ser Val Leu Leu Thr Cys Asp Ala
35 40 45
Glu Ala Lys Asn Ile Thr Trp Phe Lys Asp Gly Lys Met Ile Gly Phe
50 55 60
Leu Thr Glu Asp Lys Lys Lys Trp Asn Leu Gly Ser Asn Ala Lys Asp
65 70 75 80
Pro Arg Gly Met Tyr Gln Cys Lys Gly Ser Gln Asn Lys Ser Lys Pro
85 90 95
Leu Gln Val Tyr Tyr Arg Met Cys Gln Asn Cys Ile Glu Leu Asn Ala
100 105 110
Ala Thr Ile Ser Gly Phe Leu Phe Ala Glu Ile Val Ser Ile Phe Val
115 120 125
Leu Ala Val Gly Val Tyr Phe Ile Ala Gly Gln Asp Gly Val Arg Gln
130 135 140
Ser Arg Ala Ser Asp Lys Gln Thr Leu Leu Pro Asn Asp Gln Leu Tyr
145 150 155 160
Gln Pro Leu Lys Asp Arg Glu Asp Asp Gln Tyr Ser His Leu Gln Gly
165 170 175
Asn Gln Leu Arg Arg Asn
180
<210> 13
<211> 171
<212> PRT
<213> Homo sapiens
<400> 13
Met Glu His Ser Thr Phe Leu Ser Gly Leu Val Leu Ala Thr Leu Leu
1 5 10 15
Ser Gln Val Ser Pro Phe Lys Ile Pro Ile Glu Glu Leu Glu Asp Arg
20 25 30
Val Phe Val Asn Cys Asn Thr Ser Ile Thr Trp Val Glu Gly Thr Val
35 40 45
Gly Thr Leu Leu Ser Asp Ile Thr Arg Leu Asp Leu Gly Lys Arg Ile
50 55 60
Leu Asp Pro Arg Gly Ile Tyr Arg Cys Asn Gly Thr Asp Ile Tyr Lys
65 70 75 80
Asp Lys Glu Ser Thr Val Gln Val His Tyr Arg Met Cys Gln Ser Cys
85 90 95
Val Glu Leu Asp Pro Ala Thr Val Ala Gly Ile Ile Val Thr Asp Val
100 105 110
Ile Ala Thr Leu Leu Leu Ala Leu Gly Val Phe Cys Phe Ala Gly His
115 120 125
Glu Thr Gly Arg Leu Ser Gly Ala Ala Asp Thr Gln Ala Leu Leu Arg
130 135 140
Asn Asp Gln Val Tyr Gln Pro Leu Arg Asp Arg Asp Asp Ala Gln Tyr
145 150 155 160
Ser His Leu Gly Gly Asn Trp Ala Arg Asn Lys
165 170
<210> 14
<211> 207
<212> PRT
<213> Homo sapiens
<400> 14
Met Gln Ser Gly Thr His Trp Arg Val Leu Gly Leu Cys Leu Leu Ser
1 5 10 15
Val Gly Val Trp Gly Gln Asp Gly Asn Glu Glu Met Gly Gly Ile Thr
20 25 30
Gln Thr Pro Tyr Lys Val Ser Ile Ser Gly Thr Thr Val Ile Leu Thr
35 40 45
Cys Pro Gln Tyr Pro Gly Ser Glu Ile Leu Trp Gln His Asn Asp Lys
50 55 60
Asn Ile Gly Gly Asp Glu Asp Asp Lys Asn Ile Gly Ser Asp Glu Asp
65 70 75 80
His Leu Ser Leu Lys Glu Phe Ser Glu Leu Glu Gln Ser Gly Tyr Tyr
85 90 95
Val Cys Tyr Pro Arg Gly Ser Lys Pro Glu Asp Ala Asn Phe Tyr Leu
100 105 110
Tyr Leu Arg Ala Arg Val Cys Glu Asn Cys Met Glu Met Asp Val Met
115 120 125
Ser Val Ala Thr Ile Val Ile Val Asp Ile Cys Ile Thr Gly Gly Leu
130 135 140
Leu Leu Leu Val Tyr Tyr Trp Ser Lys Asn Arg Lys Ala Lys Ala Lys
145 150 155 160
Pro Val Thr Arg Gly Ala Gly Ala Gly Gly Arg Gln Arg Gly Gln Asn
165 170 175
Lys Glu Arg Pro Pro Pro Val Pro Asn Pro Asp Tyr Glu Pro Ile Arg
180 185 190
Lys Gly Gln Arg Asp Leu Tyr Ser Gly Leu Asn Gln Arg Arg Ile
195 200 205
<210> 15
<211> 4
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 15
Gly Gly Gly Ser
1
<210> 16
<211> 4
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 16
Ser Gly Gly Gly
1
<210> 17
<211> 5
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 17
Gly Gly Gly Gly Ser
1 5
<210> 18
<211> 5
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 18
Ser Gly Gly Gly Gly
1 5
<210> 19
<211> 6
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 19
Gly Gly Gly Gly Gly Ser
1 5
<210> 20
<211> 6
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 20
Ser Gly Gly Gly Gly Gly
1 5
<210> 21
<211> 7
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 21
Gly Gly Gly Gly Gly Gly Ser
1 5
<210> 22
<211> 7
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 22
Ser Gly Gly Gly Gly Gly Gly
1 5
<210> 23
<211> 330
<212> PRT
<213> Homo sapiens
<400> 23
Ala Ser Thr Lys Gly Pro Ser Val Phe Pro Leu Ala Pro Ser Ser Lys
1 5 10 15
Ser Thr Ser Gly Gly Thr Ala Ala Leu Gly Cys Leu Val Lys Asp Tyr
20 25 30
Phe Pro Glu Pro Val Thr Val Ser Trp Asn Ser Gly Ala Leu Thr Ser
35 40 45
Gly Val His Thr Phe Pro Ala Val Leu Gln Ser Ser Gly Leu Tyr Ser
50 55 60
Leu Ser Ser Val Val Thr Val Pro Ser Ser Ser Leu Gly Thr Gln Thr
65 70 75 80
Tyr Ile Cys Asn Val Asn His Lys Pro Ser Asn Thr Lys Val Asp Lys
85 90 95
Lys Val Glu Pro Lys Ser Cys Asp Lys Thr His Thr Cys Pro Pro Cys
100 105 110
Pro Ala Pro Glu Leu Leu Gly Gly Pro Ser Val Phe Leu Phe Pro Pro
115 120 125
Lys Pro Lys Asp Thr Leu Met Ile Ser Arg Thr Pro Glu Val Thr Cys
130 135 140
Val Val Val Asp Val Ser His Glu Asp Pro Glu Val Lys Phe Asn Trp
145 150 155 160
Tyr Val Asp Gly Val Glu Val His Asn Ala Lys Thr Lys Pro Arg Glu
165 170 175
Glu Gln Tyr Asn Ser Thr Tyr Arg Val Val Ser Val Leu Thr Val Leu
180 185 190
His Gln Asp Trp Leu Asn Gly Lys Glu Tyr Lys Cys Lys Val Ser Asn
195 200 205
Lys Ala Leu Pro Ala Pro Ile Glu Lys Thr Ile Ser Lys Ala Lys Gly
210 215 220
Gln Pro Arg Glu Pro Gln Val Tyr Thr Leu Pro Pro Ser Arg Asp Glu
225 230 235 240
Leu Thr Lys Asn Gln Val Ser Leu Thr Cys Leu Val Lys Gly Phe Tyr
245 250 255
Pro Ser Asp Ile Ala Val Glu Trp Glu Ser Asn Gly Gln Pro Glu Asn
260 265 270
Asn Tyr Lys Thr Thr Pro Pro Val Leu Asp Ser Asp Gly Ser Phe Phe
275 280 285
Leu Tyr Ser Lys Leu Thr Val Asp Lys Ser Arg Trp Gln Gln Gly Asn
290 295 300
Val Phe Ser Cys Ser Val Met His Glu Ala Leu His Asn His Tyr Thr
305 310 315 320
Gln Lys Ser Leu Ser Leu Ser Pro Gly Lys
325 330
<210> 24
<211> 326
<212> PRT
<213> Homo sapiens
<400> 24
Ala Ser Thr Lys Gly Pro Ser Val Phe Pro Leu Ala Pro Cys Ser Arg
1 5 10 15
Ser Thr Ser Glu Ser Thr Ala Ala Leu Gly Cys Leu Val Lys Asp Tyr
20 25 30
Phe Pro Glu Pro Val Thr Val Ser Trp Asn Ser Gly Ala Leu Thr Ser
35 40 45
Gly Val His Thr Phe Pro Ala Val Leu Gln Ser Ser Gly Leu Tyr Ser
50 55 60
Leu Ser Ser Val Val Thr Val Pro Ser Ser Asn Phe Gly Thr Gln Thr
65 70 75 80
Tyr Thr Cys Asn Val Asp His Lys Pro Ser Asn Thr Lys Val Asp Lys
85 90 95
Thr Val Glu Arg Lys Cys Cys Val Glu Cys Pro Pro Cys Pro Ala Pro
100 105 110
Pro Val Ala Gly Pro Ser Val Phe Leu Phe Pro Pro Lys Pro Lys Asp
115 120 125
Thr Leu Met Ile Ser Arg Thr Pro Glu Val Thr Cys Val Val Val Asp
130 135 140
Val Ser His Glu Asp Pro Glu Val Gln Phe Asn Trp Tyr Val Asp Gly
145 150 155 160
Val Glu Val His Asn Ala Lys Thr Lys Pro Arg Glu Glu Gln Phe Asn
165 170 175
Ser Thr Phe Arg Val Val Ser Val Leu Thr Val Val His Gln Asp Trp
180 185 190
Leu Asn Gly Lys Glu Tyr Lys Cys Lys Val Ser Asn Lys Gly Leu Pro
195 200 205
Ala Pro Ile Glu Lys Thr Ile Ser Lys Thr Lys Gly Gln Pro Arg Glu
210 215 220
Pro Gln Val Tyr Thr Leu Pro Pro Ser Arg Glu Glu Met Thr Lys Asn
225 230 235 240
Gln Val Ser Leu Thr Cys Leu Val Lys Gly Phe Tyr Pro Ser Asp Ile
245 250 255
Ala Val Glu Trp Glu Ser Asn Gly Gln Pro Glu Asn Asn Tyr Lys Thr
260 265 270
Thr Pro Pro Met Leu Asp Ser Asp Gly Ser Phe Phe Leu Tyr Ser Lys
275 280 285
Leu Thr Val Asp Lys Ser Arg Trp Gln Gln Gly Asn Val Phe Ser Cys
290 295 300
Ser Val Met His Glu Ala Leu His Asn His Tyr Thr Gln Lys Ser Leu
305 310 315 320
Ser Leu Ser Pro Gly Lys
325
<210> 25
<211> 377
<212> PRT
<213> Homo sapiens
<400> 25
Ala Ser Thr Lys Gly Pro Ser Val Phe Pro Leu Ala Pro Cys Ser Arg
1 5 10 15
Ser Thr Ser Gly Gly Thr Ala Ala Leu Gly Cys Leu Val Lys Asp Tyr
20 25 30
Phe Pro Glu Pro Val Thr Val Ser Trp Asn Ser Gly Ala Leu Thr Ser
35 40 45
Gly Val His Thr Phe Pro Ala Val Leu Gln Ser Ser Gly Leu Tyr Ser
50 55 60
Leu Ser Ser Val Val Thr Val Pro Ser Ser Ser Leu Gly Thr Gln Thr
65 70 75 80
Tyr Thr Cys Asn Val Asn His Lys Pro Ser Asn Thr Lys Val Asp Lys
85 90 95
Arg Val Glu Leu Lys Thr Pro Leu Gly Asp Thr Thr His Thr Cys Pro
100 105 110
Arg Cys Pro Glu Pro Lys Ser Cys Asp Thr Pro Pro Pro Cys Pro Arg
115 120 125
Cys Pro Glu Pro Lys Ser Cys Asp Thr Pro Pro Pro Cys Pro Arg Cys
130 135 140
Pro Glu Pro Lys Ser Cys Asp Thr Pro Pro Pro Cys Pro Arg Cys Pro
145 150 155 160
Ala Pro Glu Leu Leu Gly Gly Pro Ser Val Phe Leu Phe Pro Pro Lys
165 170 175
Pro Lys Asp Thr Leu Met Ile Ser Arg Thr Pro Glu Val Thr Cys Val
180 185 190
Val Val Asp Val Ser His Glu Asp Pro Glu Val Gln Phe Lys Trp Tyr
195 200 205
Val Asp Gly Val Glu Val His Asn Ala Lys Thr Lys Pro Arg Glu Glu
210 215 220
Gln Tyr Asn Ser Thr Phe Arg Val Val Ser Val Leu Thr Val Leu His
225 230 235 240
Gln Asp Trp Leu Asn Gly Lys Glu Tyr Lys Cys Lys Val Ser Asn Lys
245 250 255
Ala Leu Pro Ala Pro Ile Glu Lys Thr Ile Ser Lys Thr Lys Gly Gln
260 265 270
Pro Arg Glu Pro Gln Val Tyr Thr Leu Pro Pro Ser Arg Glu Glu Met
275 280 285
Thr Lys Asn Gln Val Ser Leu Thr Cys Leu Val Lys Gly Phe Tyr Pro
290 295 300
Ser Asp Ile Ala Val Glu Trp Glu Ser Ser Gly Gln Pro Glu Asn Asn
305 310 315 320
Tyr Asn Thr Thr Pro Pro Met Leu Asp Ser Asp Gly Ser Phe Phe Leu
325 330 335
Tyr Ser Lys Leu Thr Val Asp Lys Ser Arg Trp Gln Gln Gly Asn Ile
340 345 350
Phe Ser Cys Ser Val Met His Glu Ala Leu His Asn Arg Phe Thr Gln
355 360 365
Lys Ser Leu Ser Leu Ser Pro Gly Lys
370 375
<210> 26
<211> 327
<212> PRT
<213> Homo sapiens
<400> 26
Ala Ser Thr Lys Gly Pro Ser Val Phe Pro Leu Ala Pro Cys Ser Arg
1 5 10 15
Ser Thr Ser Glu Ser Thr Ala Ala Leu Gly Cys Leu Val Lys Asp Tyr
20 25 30
Phe Pro Glu Pro Val Thr Val Ser Trp Asn Ser Gly Ala Leu Thr Ser
35 40 45
Gly Val His Thr Phe Pro Ala Val Leu Gln Ser Ser Gly Leu Tyr Ser
50 55 60
Leu Ser Ser Val Val Thr Val Pro Ser Ser Ser Leu Gly Thr Lys Thr
65 70 75 80
Tyr Thr Cys Asn Val Asp His Lys Pro Ser Asn Thr Lys Val Asp Lys
85 90 95
Arg Val Glu Ser Lys Tyr Gly Pro Pro Cys Pro Ser Cys Pro Ala Pro
100 105 110
Glu Phe Leu Gly Gly Pro Ser Val Phe Leu Phe Pro Pro Lys Pro Lys
115 120 125
Asp Thr Leu Met Ile Ser Arg Thr Pro Glu Val Thr Cys Val Val Val
130 135 140
Asp Val Ser Gln Glu Asp Pro Glu Val Gln Phe Asn Trp Tyr Val Asp
145 150 155 160
Gly Val Glu Val His Asn Ala Lys Thr Lys Pro Arg Glu Glu Gln Phe
165 170 175
Asn Ser Thr Tyr Arg Val Val Ser Val Leu Thr Val Leu His Gln Asp
180 185 190
Trp Leu Asn Gly Lys Glu Tyr Lys Cys Lys Val Ser Asn Lys Gly Leu
195 200 205
Pro Ser Ser Ile Glu Lys Thr Ile Ser Lys Ala Lys Gly Gln Pro Arg
210 215 220
Glu Pro Gln Val Tyr Thr Leu Pro Pro Ser Gln Glu Glu Met Thr Lys
225 230 235 240
Asn Gln Val Ser Leu Thr Cys Leu Val Lys Gly Phe Tyr Pro Ser Asp
245 250 255
Ile Ala Val Glu Trp Glu Ser Asn Gly Gln Pro Glu Asn Asn Tyr Lys
260 265 270
Thr Thr Pro Pro Val Leu Asp Ser Asp Gly Ser Phe Phe Leu Tyr Ser
275 280 285
Arg Leu Thr Val Asp Lys Ser Arg Trp Gln Glu Gly Asn Val Phe Ser
290 295 300
Cys Ser Val Met His Glu Ala Leu His Asn His Tyr Thr Gln Lys Ser
305 310 315 320
Leu Ser Leu Ser Leu Gly Lys
325
<210> 27
<211> 2268
<212> DNA
<213> Homo sapiens
<400> 27
aatatcttgc atgttacaga tttcactgct cccaccagct tggagacaac atgtggttct 60
tgacaactct gctcctttgg gttccagttg atgggcaagt ggacaccaca aaggcagtga 120
tcactttgca gcctccatgg gtcagcgtgt tccaagagga aaccgtaacc ttgcactgtg 180
aggtgctcca tctgcctggg agcagctcta cacagtggtt tctcaatggc acagccactc 240
agacctcgac ccccagctac agaatcacct ctgccagtgt caatgacagt ggtgaataca 300
ggtgccagag aggtctctca gggcgaagtg accccataca gctggaaatc cacagaggct 360
ggctactact gcaggtctcc agcagagtct tcacggaagg agaacctctg gccttgaggt 420
gtcatgcgtg gaaggataag ctggtgtaca atgtgcttta ctatcgaaat ggcaaagcct 480
ttaagttttt ccactggaat tctaacctca ccattctgaa aaccaacata agtcacaatg 540
gcacctacca ttgctcaggc atgggaaagc atcgctacac atcagcagga atatctgtca 600
ctgtgaaaga gctatttcca gctccagtgc tgaatgcatc tgtgacatcc ccactcctgg 660
aggggaatct ggtcaccctg agctgtgaaa caaagttgct cttgcagagg cctggtttgc 720
agctttactt ctccttctac atgggcagca agaccctgcg aggcaggaac acatcctctg 780
aataccaaat actaactgct agaagagaag actctgggtt atactggtgc gaggctgcca 840
cagaggatgg aaatgtcctt aagcgcagcc ctgagttgga gcttcaagtg cttggcctcc 900
agttaccaac tcctgtctgg tttcatgtcc ttttctatct ggcagtggga ataatgtttt 960
tagtgaacac tgttctctgg gtgacaatac gtaaagaact gaaaagaaag aaaaagtggg 1020
atttagaaat ctctttggat tctggtcatg agaagaaggt aatttccagc cttcaagaag 1080
acagacattt agaagaagag ctgaaatgtc aggaacaaaa agaagaacag ctgcaggaag 1140
gggtgcaccg gaaggagccc cagggggcca cgtagcagcg gctcagtggg tggccatcga 1200
tctggaccgt cccctgccca cttgctcccc gtgagcactg cgtacaaaca tccaaaagtt 1260
caacaacacc agaactgtgt gtctcatggt atgtaactct taaagcaaat aaatgaactg 1320
acttcaactg ggatacattt ggaaatgtgg tcatcaaaga tgacttgaaa tgaggcctac 1380
tctaaagaat tcttgaaaaa cttacaagtc aagcctagcc tgataatcct attacatagt 1440
ttgaaaaata gtattttatt tctcagaaca aggtaaaaag gtgagtgggt gcatatgtac 1500
agaagattaa gacagagaaa cagacagaaa gagacacaca cacagccagg agtgggtaga 1560
tttcagggag acaagaggga atagtataga caataaggaa ggaaatagta cttacaaatg 1620
actcctaagg gactgtgaga ctgagagggc tcacgcctct gtgttcagga tacttagttc 1680
atggcttttc tctttgactt tactaaaaga gaatgtctcc atacgcgttc taggcataca 1740
agggggtaac tcatgatgag aaatggatgt gttattcttg ccctctcttt tgaggctctc 1800
tcataacccc tctatttcta gagacaacaa aaatgctgcc agtcctaggc ccctgccctg 1860
taggaaggca gaatgtaact gttctgtttg tttaacgatt aagtccaaat ctccaagtgc 1920
ggcactgcaa agagacgctt caagtgggga gaagcggcga taccatagag tccagatctt 1980
gcctccagag atttgcttta ccttcctgat tttctggtta ctaattagct tcaggatacg 2040
ctgctctcat acttgggctg tagtttggag acaaaatatt ttcctgccac tgtgtaacat 2100
agctgaggta aaaactgaac tatgtaaatg actctactaa aagtttaggg aaaaaaaaca 2160
ggaggagtat gacacaaaaa aaaaaaaaaa aaaaaaaaaa aaaaaaaaaa aaaaaaaaaa 2220
aaaaaaaaaa aaaaaaaaaa aaaaaaaaaa aaaaaaaaaa aaaaaaaa 2268
<210> 28
<211> 374
<212> PRT
<213> Homo sapiens
<400> 28
Met Trp Phe Leu Thr Thr Leu Leu Leu Trp Val Pro Val Asp Gly Gln
1 5 10 15
Val Asp Thr Thr Lys Ala Val Ile Thr Leu Gln Pro Pro Trp Val Ser
20 25 30
Val Phe Gln Glu Glu Thr Val Thr Leu His Cys Glu Val Leu His Leu
35 40 45
Pro Gly Ser Ser Ser Thr Gln Trp Phe Leu Asn Gly Thr Ala Thr Gln
50 55 60
Thr Ser Thr Pro Ser Tyr Arg Ile Thr Ser Ala Ser Val Asn Asp Ser
65 70 75 80
Gly Glu Tyr Arg Cys Gln Arg Gly Leu Ser Gly Arg Ser Asp Pro Ile
85 90 95
Gln Leu Glu Ile His Arg Gly Trp Leu Leu Leu Gln Val Ser Ser Arg
100 105 110
Val Phe Thr Glu Gly Glu Pro Leu Ala Leu Arg Cys His Ala Trp Lys
115 120 125
Asp Lys Leu Val Tyr Asn Val Leu Tyr Tyr Arg Asn Gly Lys Ala Phe
130 135 140
Lys Phe Phe His Trp Asn Ser Asn Leu Thr Ile Leu Lys Thr Asn Ile
145 150 155 160
Ser His Asn Gly Thr Tyr His Cys Ser Gly Met Gly Lys His Arg Tyr
165 170 175
Thr Ser Ala Gly Ile Ser Val Thr Val Lys Glu Leu Phe Pro Ala Pro
180 185 190
Val Leu Asn Ala Ser Val Thr Ser Pro Leu Leu Glu Gly Asn Leu Val
195 200 205
Thr Leu Ser Cys Glu Thr Lys Leu Leu Leu Gln Arg Pro Gly Leu Gln
210 215 220
Leu Tyr Phe Ser Phe Tyr Met Gly Ser Lys Thr Leu Arg Gly Arg Asn
225 230 235 240
Thr Ser Ser Glu Tyr Gln Ile Leu Thr Ala Arg Arg Glu Asp Ser Gly
245 250 255
Leu Tyr Trp Cys Glu Ala Ala Thr Glu Asp Gly Asn Val Leu Lys Arg
260 265 270
Ser Pro Glu Leu Glu Leu Gln Val Leu Gly Leu Gln Leu Pro Thr Pro
275 280 285
Val Trp Phe His Val Leu Phe Tyr Leu Ala Val Gly Ile Met Phe Leu
290 295 300
Val Asn Thr Val Leu Trp Val Thr Ile Arg Lys Glu Leu Lys Arg Lys
305 310 315 320
Lys Lys Trp Asp Leu Glu Ile Ser Leu Asp Ser Gly His Glu Lys Lys
325 330 335
Val Ile Ser Ser Leu Gln Glu Asp Arg His Leu Glu Glu Glu Leu Lys
340 345 350
Cys Gln Glu Gln Lys Glu Glu Gln Leu Gln Glu Gly Val His Arg Lys
355 360 365
Glu Pro Gln Gly Ala Thr
370
<210> 29
<211> 1396
<212> DNA
<213> Homo sapiens
<400> 29
gggatgacta tggagaccca aatgtctcag aatgtatgtc ccagaaacct gtggctgctt 60
caaccattga cagttttgct gctgctggct tctgcagaca gtcaagctgc tcccccaaag 120
gctgtgctga aacttgagcc cccgtggatc aacgtgctcc aggaggactc tgtgactctg 180
acatgccagg gggctcgcag ccctgagagc gactccattc agtggttcca caatgggaat 240
ctcattccca cccacacgca gcccagctac aggttcaagg ccaacaacaa tgacagcggg 300
gagtacacgt gccagactgg ccagaccagc ctcagcgacc ctgtgcatct gactgtgctt 360
tccgaatggc tggtgctcca gacccctcac ctggagttcc aggagggaga aaccatcatg 420
ctgaggtgcc acagctggaa ggacaagcct ctggtcaagg tcacattctt ccagaatgga 480
aaatcccaga aattctccca tttggatccc accttctcca tcccacaagc aaaccacagt 540
cacagtggtg attaccactg cacaggaaac ataggctaca cgctgttctc atccaagcct 600
gtgaccatca ctgtccaagt gcccagcatg ggcagctctt caccaatggg ggtcattgtg 660
gctgtggtca ttgcgactgc tgtagcagcc attgttgctg ctgtagtggc cttgatctac 720
tgcaggaaaa agcggatttc agccaattcc actgatcctg tgaaggctgc ccaatttgag 780
ccacctggac gtcaaatgat tgccatcaga aagagacaac ttgaagaaac caacaatgac 840
tatgaaacag ctgacggcgg ctacatgact ctgaacccca gggcacctac tgacgatgat 900
aaaaacatct acctgactct tcctcccaac gaccatgtca acagtaataa ctaaagagta 960
acgttatgcc atgtggtcat actctcagct tgctgagtgg atgacaaaaa gaggggaatt 1020
gttaaaggaa aatttaaatg gagactggaa aaatcctgag caaacaaaac cacctggccc 1080
ttagaaatag ctttaacttt gcttaaacta caaacacaag caaaacttca cggggtcata 1140
ctacatacaa gcataagcaa aacttaactt ggatcatttc tggtaaatgc ttatgttaga 1200
aataagacaa ccccagccaa tcacaagcag cctactaaca tataattagg tgactaggga 1260
ctttctaaga agatacctac ccccaaaaaa caattatgta attgaaaacc aaccgattgc 1320
ctttattttg cttccacatt ttcccaataa atacttgcct gtgactaaaa aaaaaaaaaa 1380
aaaaaaaaaa aaaaaa 1396
<210> 30
<211> 316
<212> PRT
<213> Homo sapiens
<400> 30
Met Thr Met Glu Thr Gln Met Ser Gln Asn Val Cys Pro Arg Asn Leu
1 5 10 15
Trp Leu Leu Gln Pro Leu Thr Val Leu Leu Leu Leu Ala Ser Ala Asp
20 25 30
Ser Gln Ala Ala Pro Pro Lys Ala Val Leu Lys Leu Glu Pro Pro Trp
35 40 45
Ile Asn Val Leu Gln Glu Asp Ser Val Thr Leu Thr Cys Gln Gly Ala
50 55 60
Arg Ser Pro Glu Ser Asp Ser Ile Gln Trp Phe His Asn Gly Asn Leu
65 70 75 80
Ile Pro Thr His Thr Gln Pro Ser Tyr Arg Phe Lys Ala Asn Asn Asn
85 90 95
Asp Ser Gly Glu Tyr Thr Cys Gln Thr Gly Gln Thr Ser Leu Ser Asp
100 105 110
Pro Val His Leu Thr Val Leu Ser Glu Trp Leu Val Leu Gln Thr Pro
115 120 125
His Leu Glu Phe Gln Glu Gly Glu Thr Ile Met Leu Arg Cys His Ser
130 135 140
Trp Lys Asp Lys Pro Leu Val Lys Val Thr Phe Phe Gln Asn Gly Lys
145 150 155 160
Ser Gln Lys Phe Ser His Leu Asp Pro Thr Phe Ser Ile Pro Gln Ala
165 170 175
Asn His Ser His Ser Gly Asp Tyr His Cys Thr Gly Asn Ile Gly Tyr
180 185 190
Thr Leu Phe Ser Ser Lys Pro Val Thr Ile Thr Val Gln Val Pro Ser
195 200 205
Met Gly Ser Ser Ser Pro Met Gly Val Ile Val Ala Val Val Ile Ala
210 215 220
Thr Ala Val Ala Ala Ile Val Ala Ala Val Val Ala Leu Ile Tyr Cys
225 230 235 240
Arg Lys Lys Arg Ile Ser Ala Asn Ser Thr Asp Pro Val Lys Ala Ala
245 250 255
Gln Phe Glu Pro Pro Gly Arg Gln Met Ile Ala Ile Arg Lys Arg Gln
260 265 270
Leu Glu Glu Thr Asn Asn Asp Tyr Glu Thr Ala Asp Gly Gly Tyr Met
275 280 285
Thr Leu Asn Pro Arg Ala Pro Thr Asp Asp Asp Lys Asn Ile Tyr Leu
290 295 300
Thr Leu Pro Pro Asn Asp His Val Asn Ser Asn Asn
305 310 315
<210> 31
<211> 1497
<212> DNA
<213> Homo sapiens
<400> 31
tgtgactgct gtgctctggg cgccagctcg ctccagggag tgatgggaat cctgtcattc 60
ttacctgtcc ttgccactga gagtgactgg gctgactgca agtcccccca gccttggggt 120
catatgcttc tgtggacagc tgtgctattc ctggctcctg ttgctgggac acctgcagct 180
cccccaaagg ctgtgctgaa actcgagccc cagtggatca acgtgctcca ggaggactct 240
gtgactctga catgccgggg gactcacagc cctgagagcg actccattca gtggttccac 300
aatgggaatc tcattcccac ccacacgcag cccagctaca ggttcaaggc caacaacaat 360
gacagcgggg agtacacgtg ccagactggc cagaccagcc tcagcgaccc tgtgcatctg 420
actgtgcttt ctgagtggct ggtgctccag acccctcacc tggagttcca ggagggagaa 480
accatcgtgc tgaggtgcca cagctggaag gacaagcctc tggtcaaggt cacattcttc 540
cagaatggaa aatccaagaa attttcccgt tcggatccca acttctccat cccacaagca 600
aaccacagtc acagtggtga ttaccactgc acaggaaaca taggctacac gctgtactca 660
tccaagcctg tgaccatcac tgtccaagct cccagctctt caccgatggg gatcattgtg 720
gctgtggtca ctgggattgc tgtagcggcc attgttgctg ctgtagtggc cttgatctac 780
tgcaggaaaa agcggatttc agccaatccc actaatcctg atgaggctga caaagttggg 840
gctgagaaca caatcaccta ttcacttctc atgcacccgg atgctctgga agagcctgat 900
gaccagaacc gtatttagtc tccattgtct tgcattggga tttgagaaga aaatcagaga 960
gggaagatct ggtatttcct ggcctaaatt ccccttgggg aggacaggga gatgctgcag 1020
ttccaaaaga gaaggtttct tccagagtca tctacctgag tcctgaagct ccctgtcctg 1080
aaagccacag acaatatggt cccaaataac cgactgcacc ttctgtgctt cagctcttct 1140
tgacatcaag gctcttccgt tccacatcca cacagccaat ccaattaatc aaaccactgt 1200
tattaacaga taatagcaac ttgggaaatg cttatgttac aggttacgtg agaacaatca 1260
tgtaaatcta tatgatttca gaaatgttaa aatagactaa cctctaccag cacattaaaa 1320
gtgattgttt ctgggtgata aaattattga tgatttttat tttctttatt tttctataaa 1380
gatcatatat tacttttata ataaaacatt ataaaaacaa aaaaaaaaaa aaaaaaaaaa 1440
aaaaaaaaaa aaaaaaaaaa aaaaaaaaaa aaaaaaaaaa aaaaaaaaaa aaaaaaa 1497
<210> 32
<211> 291
<212> PRT
<213> Homo sapiens
<400> 32
Met Gly Ile Leu Ser Phe Leu Pro Val Leu Ala Thr Glu Ser Asp Trp
1 5 10 15
Ala Asp Cys Lys Ser Pro Gln Pro Trp Gly His Met Leu Leu Trp Thr
20 25 30
Ala Val Leu Phe Leu Ala Pro Val Ala Gly Thr Pro Ala Ala Pro Pro
35 40 45
Lys Ala Val Leu Lys Leu Glu Pro Gln Trp Ile Asn Val Leu Gln Glu
50 55 60
Asp Ser Val Thr Leu Thr Cys Arg Gly Thr His Ser Pro Glu Ser Asp
65 70 75 80
Ser Ile Gln Trp Phe His Asn Gly Asn Leu Ile Pro Thr His Thr Gln
85 90 95
Pro Ser Tyr Arg Phe Lys Ala Asn Asn Asn Asp Ser Gly Glu Tyr Thr
100 105 110
Cys Gln Thr Gly Gln Thr Ser Leu Ser Asp Pro Val His Leu Thr Val
115 120 125
Leu Ser Glu Trp Leu Val Leu Gln Thr Pro His Leu Glu Phe Gln Glu
130 135 140
Gly Glu Thr Ile Val Leu Arg Cys His Ser Trp Lys Asp Lys Pro Leu
145 150 155 160
Val Lys Val Thr Phe Phe Gln Asn Gly Lys Ser Lys Lys Phe Ser Arg
165 170 175
Ser Asp Pro Asn Phe Ser Ile Pro Gln Ala Asn His Ser His Ser Gly
180 185 190
Asp Tyr His Cys Thr Gly Asn Ile Gly Tyr Thr Leu Tyr Ser Ser Lys
195 200 205
Pro Val Thr Ile Thr Val Gln Ala Pro Ser Ser Ser Pro Met Gly Ile
210 215 220
Ile Val Ala Val Val Thr Gly Ile Ala Val Ala Ala Ile Val Ala Ala
225 230 235 240
Val Val Ala Leu Ile Tyr Cys Arg Lys Lys Arg Ile Ser Ala Asn Pro
245 250 255
Thr Asn Pro Asp Glu Ala Asp Lys Val Gly Ala Glu Asn Thr Ile Thr
260 265 270
Tyr Ser Leu Leu Met His Pro Asp Ala Leu Glu Glu Pro Asp Asp Gln
275 280 285
Asn Arg Ile
290
<210> 33
<211> 2137
<212> DNA
<213> Homo sapiens
<400> 33
cttgtccact ccagtgtggc atcatgtggc agctgctcct cccaactgct ctgctacttc 60
tagtttcagc tggcatgcgg actgaagatc tcccaaaggc tgtggtgttc ctggagcctc 120
aatggtacag ggtgctcgag aaggacagtg tgactctgaa gtgccaggga gcctactccc 180
ctgaggacaa ttccacacag tggtttcaca atgagagcct catctcaagc caggcctcga 240
gctacttcat tgacgctgcc acagttgacg acagtggaga gtacaggtgc cagacaaacc 300
tctccaccct cagtgacccg gtgcagctag aagtccatat cggctggctg ttgctccagg 360
cccctcggtg ggtgttcaag gaggaagacc ctattcacct gaggtgtcac agctggaaga 420
acactgctct gcataaggtc acatatttac agaatggcaa aggcaggaag tattttcatc 480
ataattctga cttctacatt ccaaaagcca cactcaaaga cagcggctcc tacttctgca 540
gggggcttgt tgggagtaaa aatgtgtctt cagagactgt gaacatcacc atcactcaag 600
gtttgtcagt gtcaaccatc tcatcattct ttccacctgg gtaccaagtc tctttctgct 660
tggtgatggt actccttttt gcagtggaca caggactata tttctctgtg aagacaaaca 720
ttcgaagctc aacaagagac tggaaggacc ataaatttaa atggagaaag gaccctcaag 780
acaaatgacc cccatcccat gggggtaata agagcagtag cagcagcatc tctgaacatt 840
tctctggatt tgcaacccca tcatcctcag gcctctctac aagcagcagg aaacatagaa 900
ctcagagcca gatcccttat ccaactctcg acttttcctt ggtctccagt ggaagggaaa 960
agcccatgat cttcaagcag ggaagcccca gtgagtagct gcattcctag aaattgaagt 1020
ttcagagcta cacaaacact ttttctgtcc caaccgttcc ctcacagcaa agcaacaata 1080
caggctaggg atggtaatcc tttaaacata caaaaattgc tcgtgttata aattacccag 1140
tttagagggg aaaaaaaaac aattattcct aaataaatgg ataagtagaa ttaatggttg 1200
aggcaggacc atacagagtg tgggaactgc tggggatcta gggaattcag tgggaccaat 1260
gaaagcatgg ctgagaaata gcaggtagtc caggatagtc taagggaggt gttcccatct 1320
gagcccagag ataagggtgt cttcctagaa cattagccgt agtggaatta acaggaaatc 1380
atgagggtga cgtagaattg agtcttccag gggactctat cagaactgga ccatctccaa 1440
gtatataacg atgagtcctc ttaatgctag gagtagaaaa tggtcctagg aaggggactg 1500
aggattgcgg tggggggtgg ggtggaaaag aaagtacaga acaaaccctg tgtcactgtc 1560
ccaagttgct aagtgaacag aactatctca gcatcagaat gagaaagcct gagaagaaag 1620
aaccaaccac aagcacacag gaaggaaagc gcaggaggtg aaaatgcttt cttggccagg 1680
gtagtaagaa ttagaggtta atgcagggac tgtaaaacca ccttttctgc ttcaatatct 1740
aattcctgtg tagctttgtt cattgcattt attaaacaaa tgttgtataa ccaatactaa 1800
atgtactact gagcttcgct gagttaagtt atgaaacttt caaatccttc atcatgtcag 1860
ttccaatgag gtggggatgg agaagacaat tgttgcttat gaaagaaagc tttagctgtc 1920
tctgttttgt aagctttaag cgcaacattt cttggttcca ataaagcatt ttacaagatc 1980
ttgcatgcta ctcttagata gaagatggga aaaccatggt aataaaatat gaatgataaa 2040
aaaaaaaaaa aaaaaaaaaa aaaaaaaaaa aaaaaaaaaa aaaaaaaaaa aaaaaaaaaa 2100
aaaaaaaaaa aaaaaaaaaa aaaaaaaaaa aaaaaaa 2137
<210> 34
<211> 254
<212> PRT
<213> Homo sapiens
<400> 34
Met Trp Gln Leu Leu Leu Pro Thr Ala Leu Leu Leu Leu Val Ser Ala
1 5 10 15
Gly Met Arg Thr Glu Asp Leu Pro Lys Ala Val Val Phe Leu Glu Pro
20 25 30
Gln Trp Tyr Arg Val Leu Glu Lys Asp Ser Val Thr Leu Lys Cys Gln
35 40 45
Gly Ala Tyr Ser Pro Glu Asp Asn Ser Thr Gln Trp Phe His Asn Glu
50 55 60
Ser Leu Ile Ser Ser Gln Ala Ser Ser Tyr Phe Ile Asp Ala Ala Thr
65 70 75 80
Val Asp Asp Ser Gly Glu Tyr Arg Cys Gln Thr Asn Leu Ser Thr Leu
85 90 95
Ser Asp Pro Val Gln Leu Glu Val His Ile Gly Trp Leu Leu Leu Gln
100 105 110
Ala Pro Arg Trp Val Phe Lys Glu Glu Asp Pro Ile His Leu Arg Cys
115 120 125
His Ser Trp Lys Asn Thr Ala Leu His Lys Val Thr Tyr Leu Gln Asn
130 135 140
Gly Lys Gly Arg Lys Tyr Phe His His Asn Ser Asp Phe Tyr Ile Pro
145 150 155 160
Lys Ala Thr Leu Lys Asp Ser Gly Ser Tyr Phe Cys Arg Gly Leu Val
165 170 175
Gly Ser Lys Asn Val Ser Ser Glu Thr Val Asn Ile Thr Ile Thr Gln
180 185 190
Gly Leu Ser Val Ser Thr Ile Ser Ser Phe Phe Pro Pro Gly Tyr Gln
195 200 205
Val Ser Phe Cys Leu Val Met Val Leu Leu Phe Ala Val Asp Thr Gly
210 215 220
Leu Tyr Phe Ser Val Lys Thr Asn Ile Arg Ser Ser Thr Arg Asp Trp
225 230 235 240
Lys Asp His Lys Phe Lys Trp Arg Lys Asp Pro Gln Asp Lys
245 250
<210> 35
<211> 820
<212> DNA
<213> Homo sapiens
<400> 35
cactccagtg tggcatcatg tggcagctgc tcctcccaac tgctctgcta cttctagttt 60
cagctggcat gcggactgaa gatctcccaa aggctgtggt gttcctggag cctcaatggt 120
acagcgtgct tgagaaggac agtgtgactc tgaagtgcca gggagcctac tcccctgagg 180
acaattccac acagtggttt cacaatgaga gcctcatctc aagccaggcc tcgagctact 240
tcattgacgc tgccacagtc aacgacagtg gagagtacag gtgccagaca aacctctcca 300
ccctcagtga cccggtgcag ctagaagtcc atatcggctg gctgttgctc caggcccctc 360
ggtgggtgtt caaggaggaa gaccctattc acctgaggtg tcacagctgg aagaacactg 420
ctctgcataa ggtcacatat ttacagaatg gcaaagacag gaagtatttt catcataatt 480
ctgacttcca cattccaaaa gccacactca aagatagcgg ctcctacttc tgcagggggc 540
ttgttgggag taaaaatgtg tcttcagaga ctgtgaacat caccatcact caaggtttgg 600
cagtgtcaac catctcatca ttctctccac ctgggtacca agtctctttc tgcttggtga 660
tggtactcct ttttgcagtg gacacaggac tatatttctc tgtgaagaca aacatttgaa 720
gctcaacaag agactggaag gaccataaac ttaaatggag aaaggaccct caagacaaat 780
gacccccatc ccatgggagt aataagagca gtggcagcag 820
<210> 36
<211> 233
<212> PRT
<213> Homo sapiens
<400> 36
Met Trp Gln Leu Leu Leu Pro Thr Ala Leu Leu Leu Leu Val Ser Ala
1 5 10 15
Gly Met Arg Thr Glu Asp Leu Pro Lys Ala Val Val Phe Leu Glu Pro
20 25 30
Gln Trp Tyr Ser Val Leu Glu Lys Asp Ser Val Thr Leu Lys Cys Gln
35 40 45
Gly Ala Tyr Ser Pro Glu Asp Asn Ser Thr Gln Trp Phe His Asn Glu
50 55 60
Ser Leu Ile Ser Ser Gln Ala Ser Ser Tyr Phe Ile Asp Ala Ala Thr
65 70 75 80
Val Asn Asp Ser Gly Glu Tyr Arg Cys Gln Thr Asn Leu Ser Thr Leu
85 90 95
Ser Asp Pro Val Gln Leu Glu Val His Ile Gly Trp Leu Leu Leu Gln
100 105 110
Ala Pro Arg Trp Val Phe Lys Glu Glu Asp Pro Ile His Leu Arg Cys
115 120 125
His Ser Trp Lys Asn Thr Ala Leu His Lys Val Thr Tyr Leu Gln Asn
130 135 140
Gly Lys Asp Arg Lys Tyr Phe His His Asn Ser Asp Phe His Ile Pro
145 150 155 160
Lys Ala Thr Leu Lys Asp Ser Gly Ser Tyr Phe Cys Arg Gly Leu Val
165 170 175
Gly Ser Lys Asn Val Ser Ser Glu Thr Val Asn Ile Thr Ile Thr Gln
180 185 190
Gly Leu Ala Val Ser Thr Ile Ser Ser Phe Ser Pro Pro Gly Tyr Gln
195 200 205
Val Ser Phe Cys Leu Val Met Val Leu Leu Phe Ala Val Asp Thr Gly
210 215 220
Leu Tyr Phe Ser Val Lys Thr Asn Ile
225 230
<210> 37
<211> 330
<212> PRT
<213> Homo sapiens
<400> 37
Ala Ser Thr Lys Gly Pro Ser Val Phe Pro Leu Ala Pro Ser Ser Lys
1 5 10 15
Ser Thr Ser Gly Gly Thr Ala Ala Leu Gly Cys Leu Val Lys Asp Tyr
20 25 30
Phe Pro Glu Pro Val Thr Val Ser Trp Asn Ser Gly Ala Leu Thr Ser
35 40 45
Gly Val His Thr Phe Pro Ala Val Leu Gln Ser Ser Gly Leu Tyr Ser
50 55 60
Leu Ser Ser Val Val Thr Val Pro Ser Ser Ser Leu Gly Thr Gln Thr
65 70 75 80
Tyr Ile Cys Asn Val Asn His Lys Pro Ser Asn Thr Lys Val Asp Lys
85 90 95
Lys Val Glu Pro Lys Ser Cys Asp Lys Thr His Thr Cys Pro Pro Cys
100 105 110
Pro Ala Pro Glu Leu Leu Gly Gly Pro Ser Val Phe Leu Phe Pro Pro
115 120 125
Lys Pro Lys Asp Thr Leu Met Ile Ser Arg Thr Pro Glu Val Thr Cys
130 135 140
Val Val Val Asp Val Ser His Glu Asp Pro Glu Val Lys Phe Asn Trp
145 150 155 160
Tyr Val Asp Gly Val Glu Val His Asn Ala Lys Thr Lys Pro Arg Glu
165 170 175
Glu Gln Tyr Asn Ser Thr Tyr Arg Val Val Ser Val Leu Thr Val Leu
180 185 190
His Gln Asp Trp Leu Asn Gly Lys Glu Tyr Lys Cys Lys Val Ser Asn
195 200 205
Lys Ala Leu Pro Ala Pro Ile Glu Lys Thr Ile Ser Lys Ala Lys Gly
210 215 220
Gln Pro Arg Glu Pro Gln Val Tyr Thr Leu Pro Pro Ser Arg Asp Glu
225 230 235 240
Leu Thr Lys Asn Gln Val Ser Leu Thr Cys Leu Val Lys Gly Phe Tyr
245 250 255
Pro Ser Asp Ile Ala Val Glu Trp Glu Ser Asn Gly Gln Pro Glu Asn
260 265 270
Asn Tyr Lys Thr Thr Pro Pro Val Leu Asp Ser Asp Gly Ser Phe Phe
275 280 285
Leu Tyr Ser Lys Leu Thr Val Asp Lys Ser Arg Trp Gln Gln Gly Asn
290 295 300
Val Phe Ser Cys Ser Val Met His Glu Ala Leu His Asn His Tyr Thr
305 310 315 320
Gln Lys Ser Leu Ser Leu Ser Pro Gly Lys
325 330
<210> 38
<211> 326
<212> PRT
<213> Homo sapiens
<400> 38
Ala Ser Thr Lys Gly Pro Ser Val Phe Pro Leu Ala Pro Cys Ser Arg
1 5 10 15
Ser Thr Ser Glu Ser Thr Ala Ala Leu Gly Cys Leu Val Lys Asp Tyr
20 25 30
Phe Pro Glu Pro Val Thr Val Ser Trp Asn Ser Gly Ala Leu Thr Ser
35 40 45
Gly Val His Thr Phe Pro Ala Val Leu Gln Ser Ser Gly Leu Tyr Ser
50 55 60
Leu Ser Ser Val Val Thr Val Pro Ser Ser Asn Phe Gly Thr Gln Thr
65 70 75 80
Tyr Thr Cys Asn Val Asp His Lys Pro Ser Asn Thr Lys Val Asp Lys
85 90 95
Thr Val Glu Arg Lys Cys Cys Val Glu Cys Pro Pro Cys Pro Ala Pro
100 105 110
Pro Val Ala Gly Pro Ser Val Phe Leu Phe Pro Pro Lys Pro Lys Asp
115 120 125
Thr Leu Met Ile Ser Arg Thr Pro Glu Val Thr Cys Val Val Val Asp
130 135 140
Val Ser His Glu Asp Pro Glu Val Gln Phe Asn Trp Tyr Val Asp Gly
145 150 155 160
Val Glu Val His Asn Ala Lys Thr Lys Pro Arg Glu Glu Gln Phe Asn
165 170 175
Ser Thr Phe Arg Val Val Ser Val Leu Thr Val Val His Gln Asp Trp
180 185 190
Leu Asn Gly Lys Glu Tyr Lys Cys Lys Val Ser Asn Lys Gly Leu Pro
195 200 205
Ala Pro Ile Glu Lys Thr Ile Ser Lys Thr Lys Gly Gln Pro Arg Glu
210 215 220
Pro Gln Val Tyr Thr Leu Pro Pro Ser Arg Glu Glu Met Thr Lys Asn
225 230 235 240
Gln Val Ser Leu Thr Cys Leu Val Lys Gly Phe Tyr Pro Ser Asp Ile
245 250 255
Ala Val Glu Trp Glu Ser Asn Gly Gln Pro Glu Asn Asn Tyr Lys Thr
260 265 270
Thr Pro Pro Met Leu Asp Ser Asp Gly Ser Phe Phe Leu Tyr Ser Lys
275 280 285
Leu Thr Val Asp Lys Ser Arg Trp Gln Gln Gly Asn Val Phe Ser Cys
290 295 300
Ser Val Met His Glu Ala Leu His Asn His Tyr Thr Gln Lys Ser Leu
305 310 315 320
Ser Leu Ser Pro Gly Lys
325
<210> 39
<211> 327
<212> PRT
<213> Homo sapiens
<400> 39
Ala Ser Thr Lys Gly Pro Ser Val Phe Pro Leu Ala Pro Cys Ser Arg
1 5 10 15
Ser Thr Ser Glu Ser Thr Ala Ala Leu Gly Cys Leu Val Lys Asp Tyr
20 25 30
Phe Pro Glu Pro Val Thr Val Ser Trp Asn Ser Gly Ala Leu Thr Ser
35 40 45
Gly Val His Thr Phe Pro Ala Val Leu Gln Ser Ser Gly Leu Tyr Ser
50 55 60
Leu Ser Ser Val Val Thr Val Pro Ser Ser Ser Leu Gly Thr Lys Thr
65 70 75 80
Tyr Thr Cys Asn Val Asp His Lys Pro Ser Asn Thr Lys Val Asp Lys
85 90 95
Arg Val Glu Ser Lys Tyr Gly Pro Pro Cys Pro Ser Cys Pro Ala Pro
100 105 110
Glu Phe Leu Gly Gly Pro Ser Val Phe Leu Phe Pro Pro Lys Pro Lys
115 120 125
Asp Thr Leu Met Ile Ser Arg Thr Pro Glu Val Thr Cys Val Val Val
130 135 140
Asp Val Ser Gln Glu Asp Pro Glu Val Gln Phe Asn Trp Tyr Val Asp
145 150 155 160
Gly Val Glu Val His Asn Ala Lys Thr Lys Pro Arg Glu Glu Gln Phe
165 170 175
Asn Ser Thr Tyr Arg Val Val Ser Val Leu Thr Val Leu His Gln Asp
180 185 190
Trp Leu Asn Gly Lys Glu Tyr Lys Cys Lys Val Ser Asn Lys Gly Leu
195 200 205
Pro Ser Ser Ile Glu Lys Thr Ile Ser Lys Ala Lys Gly Gln Pro Arg
210 215 220
Glu Pro Gln Val Tyr Thr Leu Pro Pro Ser Gln Glu Glu Met Thr Lys
225 230 235 240
Asn Gln Val Ser Leu Thr Cys Leu Val Lys Gly Phe Tyr Pro Ser Asp
245 250 255
Ile Ala Val Glu Trp Glu Ser Asn Gly Gln Pro Glu Asn Asn Tyr Lys
260 265 270
Thr Thr Pro Pro Val Leu Asp Ser Asp Gly Ser Phe Phe Leu Tyr Ser
275 280 285
Arg Leu Thr Val Asp Lys Ser Arg Trp Gln Glu Gly Asn Val Phe Ser
290 295 300
Cys Ser Val Met His Glu Ala Leu His Asn His Tyr Thr Gln Lys Ser
305 310 315 320
Leu Ser Leu Ser Leu Gly Lys
325
<210> 40
<211> 115
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 40
Gln Val Gln Leu Val Gln Ser Gly Ala Glu Val Lys Lys Pro Gly Ala
1 5 10 15
Ser Val Lys Val Ser Cys Lys Ala Ser Gly Tyr Thr Phe Thr Asp Tyr
20 25 30
Glu Met His Trp Ile Arg Gln Pro Pro Gly Gln Gly Leu Glu Trp Ile
35 40 45
Gly Ala Ile Asp Pro Lys Thr Gly Asp Thr Ala Tyr Ser Gln Lys Phe
50 55 60
Lys Gly Arg Val Thr Leu Thr Ala Asp Lys Ser Thr Ser Thr Ala Tyr
65 70 75 80
Met Glu Leu Ser Ser Leu Thr Ser Glu Asp Thr Ala Val Tyr Tyr Cys
85 90 95
Thr Arg Phe Tyr Ser Tyr Thr Tyr Trp Gly Gln Gly Thr Leu Val Thr
100 105 110
Val Ser Ser
115
<210> 41
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 41
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Leu Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Ser Gln Asn
85 90 95
Thr His Val Pro Pro Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 42
<211> 122
<212> PRT
<213> Rattus norvegicus
<400> 42
Glu Val Gln Leu Val Glu Thr Gly Gly Ser Leu Val Gln Pro Gly Lys
1 5 10 15
Ser Leu Lys Leu Thr Cys Ala Thr Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ser Pro Glu Lys Gln Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Ala Lys Ser Asn Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Asp Asp Ser Lys Ser Asn
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Glu Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Gly Ala Tyr Tyr Gly Val Asp Ala Trp
100 105 110
Gly Gln Gly Thr Ser Val Thr Val Ser Ser
115 120
<210> 43
<211> 112
<212> PRT
<213> Rattus norvegicus
<400> 43
Asp Val Val Met Thr Gln Thr Pro Val Ser Met Ser Val Ser Leu Gly
1 5 10 15
Gly Gln Val Ser Ile Ser Cys Arg Ser Ser Gln Ser Leu Val His Asn
20 25 30
Asn Gly Asn Thr Tyr Val Ser Trp Tyr Ile Gln Lys Pro Ser Gln Ser
35 40 45
Pro Gln Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Ile Ser
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Pro Asp Asp Leu Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Asp Pro Tyr Thr Phe Gly Ala Gly Thr Lys Leu Glu Leu Lys
100 105 110
<210> 44
<211> 328
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 44
Ala Ser Thr Lys Gly Pro Ser Val Phe Pro Leu Ala Pro Ser Ser Lys
1 5 10 15
Ser Thr Ser Gly Gly Thr Ala Ala Leu Gly Cys Leu Val Lys Asp Tyr
20 25 30
Phe Pro Glu Pro Val Thr Val Ser Trp Asn Ser Gly Ala Leu Thr Ser
35 40 45
Gly Val His Thr Phe Pro Ala Val Leu Gln Ser Ser Gly Leu Tyr Ser
50 55 60
Leu Ser Ser Val Val Thr Val Pro Ser Ser Ser Leu Gly Thr Gln Thr
65 70 75 80
Tyr Ile Cys Asn Val Asn His Lys Pro Ser Asn Thr Lys Val Asp Lys
85 90 95
Lys Val Glu Pro Lys Ser Cys Asp Lys Thr His Thr Cys Pro Pro Cys
100 105 110
Pro Ala Pro Glu Leu Leu Gly Gly Pro Ser Val Phe Leu Phe Pro Pro
115 120 125
Lys Pro Lys Asp Thr Leu Met Ile Ser Arg Thr Pro Glu Val Thr Cys
130 135 140
Val Val Val Asp Val Ser His Glu Asp Pro Glu Val Lys Phe Asn Trp
145 150 155 160
Tyr Val Asp Gly Val Glu Val His Asn Ala Lys Thr Lys Pro Arg Glu
165 170 175
Glu Gln Tyr Asn Ser Thr Tyr Arg Val Val Ser Val Leu Thr Val Leu
180 185 190
His Gln Asp Trp Leu Asn Gly Lys Glu Tyr Lys Cys Lys Val Ser Asn
195 200 205
Lys Ala Leu Pro Ala Pro Ile Glu Lys Thr Ile Ser Lys Ala Lys Gly
210 215 220
Gln Pro Arg Glu Pro Gln Val Tyr Thr Leu Pro Pro Ser Arg Cys Glu
225 230 235 240
Leu Thr Lys Asn Gln Val Ser Leu Ser Cys Ala Val Lys Gly Phe Tyr
245 250 255
Pro Ser Asp Ile Ala Val Glu Trp Glu Ser Asn Gly Gln Pro Glu Asn
260 265 270
Asn Tyr Lys Thr Thr Pro Pro Val Leu Asp Ser Asp Gly Ser Phe Phe
275 280 285
Leu Val Ser Lys Leu Thr Val Asp Lys Ser Arg Trp Gln Gln Gly Asn
290 295 300
Val Phe Ser Cys Ser Val Met His Glu Ala Leu His Asn His Tyr Thr
305 310 315 320
Gln Lys Ser Leu Ser Leu Ser Pro
325
<210> 45
<211> 338
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 45
Ser Ser Ala Ser Thr Lys Gly Pro Ser Val Phe Pro Leu Ala Pro Ser
1 5 10 15
Ser Lys Ser Thr Ser Gly Gly Thr Ala Ala Leu Gly Cys Leu Val Lys
20 25 30
Asp Tyr Phe Pro Glu Pro Val Thr Val Ser Trp Asn Ser Gly Ala Leu
35 40 45
Thr Ser Gly Val His Thr Phe Pro Ala Val Leu Gln Ser Ser Gly Leu
50 55 60
Tyr Ser Leu Ser Ser Val Val Thr Val Pro Ser Ser Ser Leu Gly Thr
65 70 75 80
Gln Thr Tyr Ile Cys Asn Val Asn His Lys Pro Ser Asn Thr Lys Val
85 90 95
Asp Lys Lys Val Glu Pro Lys Ser Cys Asp Lys Thr His Thr Cys Pro
100 105 110
Pro Cys Pro Ala Pro Glu Ala Ala Gly Gly Pro Ser Val Phe Leu Phe
115 120 125
Pro Pro Lys Pro Lys Asp Thr Leu Met Ile Ser Arg Thr Pro Glu Val
130 135 140
Thr Cys Val Val Val Asp Val Ser His Glu Asp Pro Glu Val Lys Phe
145 150 155 160
Asn Trp Tyr Val Asp Gly Val Glu Val His Asn Ala Lys Thr Lys Pro
165 170 175
Arg Glu Glu Gln Tyr Ala Ser Thr Tyr Arg Val Val Ser Val Leu Thr
180 185 190
Val Leu His Gln Asp Trp Leu Asn Gly Lys Glu Tyr Lys Cys Lys Val
195 200 205
Ser Asn Lys Ala Leu Pro Ala Pro Ile Glu Lys Thr Ile Ser Lys Ala
210 215 220
Lys Gly Gln Pro Arg Glu Pro Gln Val Cys Thr Leu Pro Pro Ser Arg
225 230 235 240
Asp Glu Leu Thr Lys Asn Gln Val Ser Leu Trp Cys Leu Val Lys Gly
245 250 255
Phe Tyr Pro Ser Asp Ile Ala Val Glu Trp Glu Ser Asn Gly Gln Pro
260 265 270
Glu Asn Asn Tyr Lys Thr Thr Pro Pro Val Leu Asp Ser Asp Gly Ser
275 280 285
Phe Phe Leu Tyr Ser Lys Leu Thr Val Asp Lys Ser Arg Trp Gln Gln
290 295 300
Gly Asn Val Phe Ser Cys Ser Val Met His Glu Ala Leu His Asn His
305 310 315 320
Tyr Thr Gln Lys Ser Leu Ser Leu Ser Pro His His His His His His
325 330 335
His His
<210> 46
<211> 336
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 46
Ala Ser Thr Lys Gly Pro Ser Val Phe Pro Leu Ala Pro Ser Ser Lys
1 5 10 15
Ser Thr Ser Gly Gly Thr Ala Ala Leu Gly Cys Leu Val Lys Asp Tyr
20 25 30
Phe Pro Glu Pro Val Thr Val Ser Trp Asn Ser Gly Ala Leu Thr Ser
35 40 45
Gly Val His Thr Phe Pro Ala Val Leu Gln Ser Ser Gly Leu Tyr Ser
50 55 60
Leu Ser Ser Val Val Thr Val Pro Ser Ser Ser Leu Gly Thr Gln Thr
65 70 75 80
Tyr Ile Cys Asn Val Asn His Lys Pro Ser Asn Thr Lys Val Asp Lys
85 90 95
Lys Val Glu Pro Lys Ser Cys Asp Lys Thr His Thr Cys Pro Pro Cys
100 105 110
Pro Ala Pro Glu Ala Ala Gly Gly Pro Ser Val Phe Leu Phe Pro Pro
115 120 125
Lys Pro Lys Asp Thr Leu Met Ile Ser Arg Thr Pro Glu Val Thr Cys
130 135 140
Val Val Val Asp Val Ser His Glu Asp Pro Glu Val Lys Phe Asn Trp
145 150 155 160
Tyr Val Asp Gly Val Glu Val His Asn Ala Lys Thr Lys Pro Arg Glu
165 170 175
Glu Gln Tyr Ala Ser Thr Tyr Arg Val Val Ser Val Leu Thr Val Leu
180 185 190
His Gln Asp Trp Leu Asn Gly Lys Glu Tyr Lys Cys Lys Val Ser Asn
195 200 205
Lys Ala Leu Pro Ala Pro Ile Glu Lys Thr Ile Ser Lys Ala Lys Gly
210 215 220
Gln Pro Arg Glu Pro Gln Val Tyr Thr Leu Pro Pro Ser Arg Cys Glu
225 230 235 240
Leu Thr Lys Asn Gln Val Ser Leu Ser Cys Ala Val Lys Gly Phe Tyr
245 250 255
Pro Ser Asp Ile Ala Val Glu Trp Glu Ser Asn Gly Gln Pro Glu Asn
260 265 270
Asn Tyr Lys Thr Thr Pro Pro Val Leu Asp Ser Asp Gly Ser Phe Phe
275 280 285
Leu Val Ser Lys Leu Thr Val Asp Lys Ser Arg Trp Gln Gln Gly Asn
290 295 300
Val Phe Ser Cys Ser Val Met His Glu Ala Leu His Asn His Tyr Thr
305 310 315 320
Gln Lys Ser Leu Ser Leu Ser Pro Asp Tyr Lys Asp Asp Asp Asp Lys
325 330 335
<210> 47
<211> 450
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 47
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Leu Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Ser Gln Asn
85 90 95
Thr His Val Pro Pro Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
Ser Ser Ala Ser Thr Lys Gly Pro Ser Val Phe Pro Leu Ala Pro Ser
115 120 125
Ser Lys Ser Thr Ser Gly Gly Thr Ala Ala Leu Gly Cys Leu Val Lys
130 135 140
Asp Tyr Phe Pro Glu Pro Val Thr Val Ser Trp Asn Ser Gly Ala Leu
145 150 155 160
Thr Ser Gly Val His Thr Phe Pro Ala Val Leu Gln Ser Ser Gly Leu
165 170 175
Tyr Ser Leu Ser Ser Val Val Thr Val Pro Ser Ser Ser Leu Gly Thr
180 185 190
Gln Thr Tyr Ile Cys Asn Val Asn His Lys Pro Ser Asn Thr Lys Val
195 200 205
Asp Lys Lys Val Glu Pro Lys Ser Cys Asp Lys Thr His Thr Cys Pro
210 215 220
Pro Cys Pro Ala Pro Glu Ala Ala Gly Gly Pro Ser Val Phe Leu Phe
225 230 235 240
Pro Pro Lys Pro Lys Asp Thr Leu Met Ile Ser Arg Thr Pro Glu Val
245 250 255
Thr Cys Val Val Val Asp Val Ser His Glu Asp Pro Glu Val Lys Phe
260 265 270
Asn Trp Tyr Val Asp Gly Val Glu Val His Asn Ala Lys Thr Lys Pro
275 280 285
Arg Glu Glu Gln Tyr Ala Ser Thr Tyr Arg Val Val Ser Val Leu Thr
290 295 300
Val Leu His Gln Asp Trp Leu Asn Gly Lys Glu Tyr Lys Cys Lys Val
305 310 315 320
Ser Asn Lys Ala Leu Pro Ala Pro Ile Glu Lys Thr Ile Ser Lys Ala
325 330 335
Lys Gly Gln Pro Arg Glu Pro Gln Val Cys Thr Leu Pro Pro Ser Arg
340 345 350
Asp Glu Leu Thr Lys Asn Gln Val Ser Leu Trp Cys Leu Val Lys Gly
355 360 365
Phe Tyr Pro Ser Asp Ile Ala Val Glu Trp Glu Ser Asn Gly Gln Pro
370 375 380
Glu Asn Asn Tyr Lys Thr Thr Pro Pro Val Leu Asp Ser Asp Gly Ser
385 390 395 400
Phe Phe Leu Tyr Ser Lys Leu Thr Val Asp Lys Ser Arg Trp Gln Gln
405 410 415
Gly Asn Val Phe Ser Cys Ser Val Met His Glu Ala Leu His Asn His
420 425 430
Tyr Thr Gln Lys Ser Leu Ser Leu Ser Pro His His His His His His
435 440 445
His His
450
<210> 48
<211> 222
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 48
Gln Val Gln Leu Val Gln Ser Gly Ala Glu Val Lys Lys Pro Gly Ala
1 5 10 15
Ser Val Lys Val Ser Cys Lys Ala Ser Gly Tyr Thr Phe Thr Asp Tyr
20 25 30
Glu Met His Trp Ile Arg Gln Pro Pro Gly Gln Gly Leu Glu Trp Ile
35 40 45
Gly Ala Ile Asp Pro Lys Thr Gly Asp Thr Ala Tyr Ser Gln Lys Phe
50 55 60
Lys Gly Arg Val Thr Leu Thr Ala Asp Lys Ser Thr Ser Thr Ala Tyr
65 70 75 80
Met Glu Leu Ser Ser Leu Thr Ser Glu Asp Thr Ala Val Tyr Tyr Cys
85 90 95
Thr Arg Phe Tyr Ser Tyr Thr Tyr Trp Gly Gln Gly Thr Leu Val Thr
100 105 110
Val Ser Ser Ala Ser Val Ala Ala Pro Ser Val Phe Ile Phe Pro Pro
115 120 125
Ser Asp Glu Gln Leu Lys Ser Gly Thr Ala Ser Val Val Cys Leu Leu
130 135 140
Asn Asn Phe Tyr Pro Arg Glu Ala Lys Val Gln Trp Lys Val Asp Asn
145 150 155 160
Ala Leu Gln Ser Gly Asn Ser Gln Glu Ser Val Thr Glu Gln Asp Ser
165 170 175
Lys Asp Ser Thr Tyr Ser Leu Ser Ser Thr Leu Thr Leu Ser Lys Ala
180 185 190
Asp Tyr Glu Lys His Lys Val Tyr Ala Cys Glu Val Thr His Gln Gly
195 200 205
Leu Ser Ser Pro Val Thr Lys Ser Phe Asn Arg Gly Glu Cys
210 215 220
<210> 49
<211> 458
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 49
Glu Val Gln Leu Val Glu Thr Gly Gly Ser Leu Val Gln Pro Gly Lys
1 5 10 15
Ser Leu Lys Leu Thr Cys Ala Thr Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ser Pro Glu Lys Gln Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Ala Lys Ser Asn Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Asp Asp Ser Lys Ser Asn
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Glu Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Gly Ala Tyr Tyr Gly Val Asp Ala Trp
100 105 110
Gly Gln Gly Thr Ser Val Thr Val Ser Ser Ala Ser Thr Lys Gly Pro
115 120 125
Ser Val Phe Pro Leu Ala Pro Ser Ser Lys Ser Thr Ser Gly Gly Thr
130 135 140
Ala Ala Leu Gly Cys Leu Val Lys Asp Tyr Phe Pro Glu Pro Val Thr
145 150 155 160
Val Ser Trp Asn Ser Gly Ala Leu Thr Ser Gly Val His Thr Phe Pro
165 170 175
Ala Val Leu Gln Ser Ser Gly Leu Tyr Ser Leu Ser Ser Val Val Thr
180 185 190
Val Pro Ser Ser Ser Leu Gly Thr Gln Thr Tyr Ile Cys Asn Val Asn
195 200 205
His Lys Pro Ser Asn Thr Lys Val Asp Lys Lys Val Glu Pro Lys Ser
210 215 220
Cys Asp Lys Thr His Thr Cys Pro Pro Cys Pro Ala Pro Glu Ala Ala
225 230 235 240
Gly Gly Pro Ser Val Phe Leu Phe Pro Pro Lys Pro Lys Asp Thr Leu
245 250 255
Met Ile Ser Arg Thr Pro Glu Val Thr Cys Val Val Val Asp Val Ser
260 265 270
His Glu Asp Pro Glu Val Lys Phe Asn Trp Tyr Val Asp Gly Val Glu
275 280 285
Val His Asn Ala Lys Thr Lys Pro Arg Glu Glu Gln Tyr Ala Ser Thr
290 295 300
Tyr Arg Val Val Ser Val Leu Thr Val Leu His Gln Asp Trp Leu Asn
305 310 315 320
Gly Lys Glu Tyr Lys Cys Lys Val Ser Asn Lys Ala Leu Pro Ala Pro
325 330 335
Ile Glu Lys Thr Ile Ser Lys Ala Lys Gly Gln Pro Arg Glu Pro Gln
340 345 350
Val Tyr Thr Leu Pro Pro Ser Arg Cys Glu Leu Thr Lys Asn Gln Val
355 360 365
Ser Leu Ser Cys Ala Val Lys Gly Phe Tyr Pro Ser Asp Ile Ala Val
370 375 380
Glu Trp Glu Ser Asn Gly Gln Pro Glu Asn Asn Tyr Lys Thr Thr Pro
385 390 395 400
Pro Val Leu Asp Ser Asp Gly Ser Phe Phe Leu Val Ser Lys Leu Thr
405 410 415
Val Asp Lys Ser Arg Trp Gln Gln Gly Asn Val Phe Ser Cys Ser Val
420 425 430
Met His Glu Ala Leu His Asn His Tyr Thr Gln Lys Ser Leu Ser Leu
435 440 445
Ser Pro Asp Tyr Lys Asp Asp Asp Asp Lys
450 455
<210> 50
<211> 219
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 50
Asp Val Val Met Thr Gln Thr Pro Val Ser Met Ser Val Ser Leu Gly
1 5 10 15
Gly Gln Val Ser Ile Ser Cys Arg Ser Ser Gln Ser Leu Val His Asn
20 25 30
Asn Gly Asn Thr Tyr Val Ser Trp Tyr Ile Gln Lys Pro Ser Gln Ser
35 40 45
Pro Gln Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Ile Ser
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Pro Asp Asp Leu Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Asp Pro Tyr Thr Phe Gly Ala Gly Thr Lys Leu Glu Leu Lys
100 105 110
Arg Thr Val Ala Ala Pro Ser Val Phe Ile Phe Pro Pro Ser Asp Glu
115 120 125
Gln Leu Lys Ser Gly Thr Ala Ser Val Val Cys Leu Leu Asn Asn Phe
130 135 140
Tyr Pro Arg Glu Ala Lys Val Gln Trp Lys Val Asp Asn Ala Leu Gln
145 150 155 160
Ser Gly Asn Ser Gln Glu Ser Val Thr Glu Gln Asp Ser Lys Asp Ser
165 170 175
Thr Tyr Ser Leu Ser Ser Thr Leu Thr Leu Ser Lys Ala Asp Tyr Glu
180 185 190
Lys His Lys Val Tyr Ala Cys Glu Val Thr His Gln Gly Leu Ser Ser
195 200 205
Pro Val Thr Lys Ser Phe Asn Arg Gly Glu Cys
210 215
<210> 51
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 51
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Val Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Ala Lys Ser Asn Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Asp Asp Ser Lys Asn Ser
65 70 75 80
Leu Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Ala Arg Val His Tyr Gly Ala Tyr Tyr Gly Val Asp Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 52
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 52
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Val Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Ala Lys Ser Asn Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Asp Asp Ser Lys Asn Ser
65 70 75 80
Leu Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Gly Ala Tyr Tyr Gly Val Asp Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 53
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 53
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Leu Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 54
<211> 448
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 54
Gln Val Gln Leu Val Gln Ser Gly Ala Glu Val Lys Lys Pro Gly Ala
1 5 10 15
Ser Val Lys Val Ser Cys Lys Ala Ser Gly Tyr Thr Phe Thr Asp Tyr
20 25 30
Glu Met His Trp Ile Arg Gln Pro Pro Gly Gln Gly Leu Glu Trp Ile
35 40 45
Gly Ala Ile Asp Pro Lys Thr Gly Asp Thr Ala Tyr Ser Gln Lys Phe
50 55 60
Lys Gly Arg Val Thr Leu Thr Ala Asp Lys Ser Thr Ser Thr Ala Tyr
65 70 75 80
Met Glu Leu Ser Ser Leu Thr Ser Glu Asp Thr Ala Val Tyr Tyr Cys
85 90 95
Thr Arg Phe Tyr Ser Tyr Thr Tyr Trp Gly Gln Gly Thr Leu Val Thr
100 105 110
Val Ser Ser Ala Ser Thr Lys Gly Pro Ser Val Phe Pro Leu Ala Pro
115 120 125
Cys Ser Arg Ser Thr Ser Glu Ser Thr Ala Ala Leu Gly Cys Leu Val
130 135 140
Lys Asp Tyr Phe Pro Glu Pro Val Thr Val Ser Trp Asn Ser Gly Ala
145 150 155 160
Leu Thr Ser Gly Val His Thr Phe Pro Ala Val Leu Gln Ser Ser Gly
165 170 175
Leu Tyr Ser Leu Ser Ser Val Val Thr Val Pro Ser Ser Ser Leu Gly
180 185 190
Thr Lys Thr Tyr Thr Cys Asn Val Asp His Lys Pro Ser Asn Thr Lys
195 200 205
Val Asp Lys Arg Val Glu Ser Lys Tyr Gly Pro Pro Cys Pro Pro Cys
210 215 220
Pro Ala Pro Glu Phe Arg Gly Gly Pro Lys Val Phe Leu Phe Pro Pro
225 230 235 240
Lys Pro Lys Asp Thr Leu Met Ile Ser Arg Thr Pro Glu Val Thr Cys
245 250 255
Val Val Val Asp Val Ser Gln Glu Asp Pro Glu Val Gln Phe Asn Trp
260 265 270
Tyr Val Asp Gly Val Glu Val His Asn Ala Lys Thr Lys Pro Arg Glu
275 280 285
Glu Gln Phe Ala Ser Thr Tyr Arg Val Val Ser Val Leu Thr Val Leu
290 295 300
His Gln Asp Trp Leu Asn Gly Lys Glu Tyr Lys Cys Lys Val Ser Asn
305 310 315 320
Lys Gly Leu Pro Ser Ser Ile Glu Lys Thr Ile Ser Lys Ala Lys Gly
325 330 335
Gln Pro Arg Glu Pro Gln Val Tyr Thr Leu Pro Pro Ser Gln Lys Glu
340 345 350
Met Thr Lys Asn Gln Val Ser Leu Thr Cys Leu Val Lys Gly Phe Tyr
355 360 365
Pro Ser Asp Ile Ala Val Glu Trp Glu Ser Asn Gly Gln Pro Glu Asn
370 375 380
Asn Tyr Lys Thr Thr Pro Pro Val Leu Asp Ser Asp Gly Ser Phe Phe
385 390 395 400
Leu Tyr Ser Arg Leu Thr Val Asp Lys Ser Arg Trp Gln Glu Gly Asn
405 410 415
Val Phe Ser Cys Ser Val Met His Glu Ala Leu His Asn Arg Tyr Thr
420 425 430
Gln Lys Ser Leu Ser Leu Ser Leu His His His His His His His His
435 440 445
<210> 55
<211> 455
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 55
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Val Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Ala Lys Ser Asn Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Asp Asp Ser Lys Asn Ser
65 70 75 80
Leu Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Gly Ala Tyr Tyr Gly Val Asp Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser Ala Ser Thr Lys Gly Pro
115 120 125
Ser Val Phe Pro Leu Ala Pro Cys Ser Arg Ser Thr Ser Glu Ser Thr
130 135 140
Ala Ala Leu Gly Cys Leu Val Lys Asp Tyr Phe Pro Glu Pro Val Thr
145 150 155 160
Val Ser Trp Asn Ser Gly Ala Leu Thr Ser Gly Val His Thr Phe Pro
165 170 175
Ala Val Leu Gln Ser Ser Gly Leu Tyr Ser Leu Ser Ser Val Val Thr
180 185 190
Val Pro Ser Ser Ser Leu Gly Thr Lys Thr Tyr Thr Cys Asn Val Asp
195 200 205
His Lys Pro Ser Asn Thr Lys Val Asp Lys Arg Val Glu Ser Lys Tyr
210 215 220
Gly Pro Pro Cys Pro Pro Cys Pro Ala Pro Glu Phe Arg Gly Gly Pro
225 230 235 240
Lys Val Phe Leu Phe Pro Pro Lys Pro Lys Asp Thr Leu Met Ile Ser
245 250 255
Arg Thr Pro Glu Val Thr Cys Val Val Val Asp Val Ser Gln Glu Asp
260 265 270
Pro Glu Val Gln Phe Asn Trp Tyr Val Asp Gly Val Glu Val His Asn
275 280 285
Ala Lys Thr Lys Pro Arg Glu Glu Gln Phe Ala Ser Thr Tyr Arg Val
290 295 300
Val Ser Val Leu Thr Val Leu His Gln Asp Trp Leu Asn Gly Lys Glu
305 310 315 320
Tyr Lys Cys Lys Val Ser Asn Lys Gly Leu Pro Ser Ser Ile Glu Lys
325 330 335
Thr Ile Ser Lys Ala Lys Gly Gln Pro Arg Glu Pro Gln Val Tyr Thr
340 345 350
Leu Pro Pro Ser Gln Glu Glu Met Thr Lys Asn Gln Val Ser Leu Thr
355 360 365
Cys Leu Val Lys Gly Phe Tyr Pro Ser Asp Ile Ala Val Glu Trp Glu
370 375 380
Ser Asn Gly Gln Pro Glu Asn Asn Tyr Lys Thr Thr Pro Pro Val Leu
385 390 395 400
Asp Ser Asp Gly Ser Phe Phe Leu Tyr Ser Arg Leu Thr Val Asp Lys
405 410 415
Ser Arg Trp Gln Glu Gly Asn Val Phe Ser Cys Ser Val Met His Glu
420 425 430
Ala Leu His Asn His Tyr Thr Gln Glu Ser Leu Ser Leu Ser Leu Asp
435 440 445
Tyr Lys Asp Asp Asp Asp Lys
450 455
<210> 56
<211> 219
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 56
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Leu Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
Arg Thr Val Ala Ala Pro Ser Val Phe Ile Phe Pro Pro Ser Asp Glu
115 120 125
Gln Leu Lys Ser Gly Thr Ala Ser Val Val Cys Leu Leu Asn Asn Phe
130 135 140
Tyr Pro Arg Glu Ala Lys Val Gln Trp Lys Val Asp Asn Ala Leu Gln
145 150 155 160
Ser Gly Asn Ser Gln Glu Ser Val Thr Glu Gln Asp Ser Lys Asp Ser
165 170 175
Thr Tyr Ser Leu Ser Ser Thr Leu Thr Leu Ser Lys Ala Asp Tyr Glu
180 185 190
Lys His Lys Val Tyr Ala Cys Glu Val Thr His Gln Gly Leu Ser Ser
195 200 205
Pro Val Thr Lys Ser Phe Asn Arg Gly Glu Cys
210 215
<210> 57
<211> 336
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 57
Ala Ser Thr Lys Gly Pro Ser Val Phe Pro Leu Ala Pro Ser Ser Lys
1 5 10 15
Ser Thr Ser Gly Gly Thr Ala Ala Leu Gly Cys Leu Val Lys Asp Tyr
20 25 30
Phe Pro Glu Pro Val Thr Val Ser Trp Asn Ser Gly Ala Leu Thr Ser
35 40 45
Gly Val His Thr Phe Pro Ala Val Leu Gln Ser Ser Gly Leu Tyr Ser
50 55 60
Leu Ser Ser Val Val Thr Val Pro Ser Ser Ser Leu Gly Thr Gln Thr
65 70 75 80
Tyr Ile Cys Asn Val Asn His Lys Pro Ser Asn Thr Lys Val Asp Lys
85 90 95
Lys Val Glu Pro Lys Ser Cys Asp Lys Thr His Thr Cys Pro Pro Cys
100 105 110
Pro Ala Pro Glu Ala Ala Gly Gly Pro Ser Val Phe Leu Phe Pro Pro
115 120 125
Lys Pro Lys Asp Thr Leu Met Ile Ser Arg Thr Pro Glu Val Thr Cys
130 135 140
Val Val Val Asp Val Ser His Glu Asp Pro Glu Val Lys Phe Asn Trp
145 150 155 160
Tyr Val Asp Gly Val Glu Val His Asn Ala Lys Thr Lys Pro Arg Glu
165 170 175
Glu Gln Tyr Ala Ser Thr Tyr Arg Val Val Ser Val Leu Thr Val Leu
180 185 190
His Gln Asp Trp Leu Asn Gly Lys Glu Tyr Lys Cys Lys Val Ser Asn
195 200 205
Lys Ala Leu Pro Ala Pro Ile Glu Lys Thr Ile Ser Lys Ala Lys Gly
210 215 220
Gln Pro Arg Glu Pro Gln Val Tyr Thr Leu Pro Pro Ser Arg Cys Glu
225 230 235 240
Leu Thr Lys Asn Gln Val Ser Leu Ser Cys Ala Val Lys Gly Phe Tyr
245 250 255
Pro Ser Asp Ile Ala Val Glu Trp Glu Ser Asn Gly Gln Pro Glu Asn
260 265 270
Asn Tyr Lys Thr Thr Pro Pro Val Leu Asp Ser Asp Gly Ser Phe Phe
275 280 285
Leu Val Ser Lys Leu Thr Val Asp Lys Ser Arg Trp Gln Gln Gly Asn
290 295 300
Val Phe Ser Cys Ser Val Met His Glu Ala Leu His Asn His Tyr Thr
305 310 315 320
Gln Lys Ser Leu Ser Leu Ser Pro Asp Tyr Lys Asp Asp Asp Asp Lys
325 330 335
<210> 58
<211> 338
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 58
Ser Ser Ala Ser Thr Lys Gly Pro Ser Val Phe Pro Leu Ala Pro Ser
1 5 10 15
Ser Lys Ser Thr Ser Gly Gly Thr Ala Ala Leu Gly Cys Leu Val Lys
20 25 30
Asp Tyr Phe Pro Glu Pro Val Thr Val Ser Trp Asn Ser Gly Ala Leu
35 40 45
Thr Ser Gly Val His Thr Phe Pro Ala Val Leu Gln Ser Ser Gly Leu
50 55 60
Tyr Ser Leu Ser Ser Val Val Thr Val Pro Ser Ser Ser Leu Gly Thr
65 70 75 80
Gln Thr Tyr Ile Cys Asn Val Asn His Lys Pro Ser Asn Thr Lys Val
85 90 95
Asp Lys Lys Val Glu Pro Lys Ser Cys Asp Lys Thr His Thr Cys Pro
100 105 110
Pro Cys Pro Ala Pro Glu Ala Ala Gly Gly Pro Ser Val Phe Leu Phe
115 120 125
Pro Pro Lys Pro Lys Asp Thr Leu Met Ile Ser Arg Thr Pro Glu Val
130 135 140
Thr Cys Val Val Val Asp Val Ser His Glu Asp Pro Glu Val Lys Phe
145 150 155 160
Asn Trp Tyr Val Asp Gly Val Glu Val His Asn Ala Lys Thr Lys Pro
165 170 175
Arg Glu Glu Gln Tyr Ala Ser Thr Tyr Arg Val Val Ser Val Leu Thr
180 185 190
Val Leu His Gln Asp Trp Leu Asn Gly Lys Glu Tyr Lys Cys Lys Val
195 200 205
Ser Asn Lys Ala Leu Pro Ala Pro Ile Glu Lys Thr Ile Ser Lys Ala
210 215 220
Lys Gly Gln Pro Arg Glu Pro Gln Val Cys Thr Leu Pro Pro Ser Arg
225 230 235 240
Asp Glu Leu Thr Lys Asn Gln Val Ser Leu Trp Cys Leu Val Lys Gly
245 250 255
Phe Tyr Pro Ser Asp Ile Ala Val Glu Trp Glu Ser Asn Gly Gln Pro
260 265 270
Glu Asn Asn Tyr Lys Thr Thr Pro Pro Val Leu Asp Ser Asp Gly Ser
275 280 285
Phe Phe Leu Tyr Ser Lys Leu Thr Val Asp Lys Ser Arg Trp Gln Gln
290 295 300
Gly Asn Val Phe Ser Cys Ser Val Met His Glu Ala Leu His Asn His
305 310 315 320
Tyr Thr Gln Lys Ser Leu Ser Leu Ser Pro His His His His His His
325 330 335
His His
<210> 59
<211> 230
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 59
Glu Pro Lys Ser Ser Asp Lys Thr His Thr Cys Pro Pro Cys Pro Ala
1 5 10 15
Pro Glu Leu Leu Gly Gly Pro Ser Val Phe Leu Phe Pro Pro Lys Pro
20 25 30
Lys Asp Thr Leu Met Ile Ser Arg Thr Pro Glu Val Thr Cys Val Val
35 40 45
Val Asp Val Ser His Glu Asp Pro Glu Val Lys Phe Asn Trp Tyr Val
50 55 60
Asp Gly Val Glu Val His Asn Ala Lys Thr Lys Pro Arg Glu Glu Gln
65 70 75 80
Tyr Asn Ser Thr Tyr Arg Val Val Ser Val Leu Thr Val Leu His Gln
85 90 95
Asp Trp Leu Asn Gly Lys Glu Tyr Lys Cys Lys Val Ser Asn Lys Ala
100 105 110
Leu Pro Ala Pro Ile Glu Lys Thr Ile Ser Lys Ala Lys Gly Gln Pro
115 120 125
Arg Glu Pro Gln Val Cys Thr Leu Pro Pro Ser Arg Asp Glu Leu Thr
130 135 140
Lys Asn Gln Val Ser Leu Trp Cys Leu Val Lys Gly Phe Tyr Pro Ser
145 150 155 160
Asp Ile Ala Val Glu Trp Glu Ser Asn Gly Gln Pro Glu Asn Asn Tyr
165 170 175
Lys Thr Thr Pro Pro Val Leu Asp Ser Asp Gly Ser Phe Phe Leu Tyr
180 185 190
Ser Lys Leu Thr Val Asp Lys Ser Arg Trp Gln Gln Gly Asn Val Phe
195 200 205
Ser Cys Ser Val Met His Glu Ala Leu His Asn Arg Tyr Thr Gln Lys
210 215 220
Ser Leu Ser Leu Ser Pro
225 230
<210> 60
<211> 325
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 60
Ala Ser Thr Lys Gly Pro Ser Val Phe Pro Leu Ala Pro Cys Ser Arg
1 5 10 15
Ser Thr Ser Glu Ser Thr Ala Ala Leu Gly Cys Leu Val Lys Asp Tyr
20 25 30
Phe Pro Glu Pro Val Thr Val Ser Trp Asn Ser Gly Ala Leu Thr Ser
35 40 45
Gly Val His Thr Phe Pro Ala Val Leu Gln Ser Ser Gly Leu Tyr Ser
50 55 60
Leu Ser Ser Val Val Thr Val Pro Ser Ser Ser Leu Gly Thr Lys Thr
65 70 75 80
Tyr Thr Cys Asn Val Asp His Lys Pro Ser Asn Thr Lys Val Asp Lys
85 90 95
Arg Val Glu Ser Lys Tyr Gly Pro Pro Cys Pro Pro Cys Pro Ala Pro
100 105 110
Glu Phe Arg Gly Gly Pro Lys Val Phe Leu Phe Pro Pro Lys Pro Lys
115 120 125
Asp Thr Leu Met Ile Ser Arg Thr Pro Glu Val Thr Cys Val Val Val
130 135 140
Asp Val Ser Gln Glu Asp Pro Glu Val Gln Phe Asn Trp Tyr Val Asp
145 150 155 160
Gly Val Glu Val His Asn Ala Lys Thr Lys Pro Arg Glu Glu Gln Phe
165 170 175
Ala Ser Thr Tyr Arg Val Val Ser Val Leu Thr Val Leu His Gln Asp
180 185 190
Trp Leu Asn Gly Lys Glu Tyr Lys Cys Lys Val Ser Asn Lys Gly Leu
195 200 205
Pro Ser Ser Ile Glu Lys Thr Ile Ser Lys Ala Lys Gly Gln Pro Arg
210 215 220
Glu Pro Gln Val Tyr Thr Leu Pro Pro Ser Gln Lys Glu Met Thr Lys
225 230 235 240
Asn Gln Val Ser Leu Thr Cys Leu Val Lys Gly Phe Tyr Pro Ser Asp
245 250 255
Ile Ala Val Glu Trp Glu Ser Asn Gly Gln Pro Glu Asn Asn Tyr Lys
260 265 270
Thr Thr Pro Pro Val Leu Asp Ser Asp Gly Ser Phe Phe Leu Tyr Ser
275 280 285
Lys Leu Thr Val Asp Lys Ser Arg Trp Gln Glu Gly Asn Val Phe Ser
290 295 300
Cys Ser Val Met His Glu Ala Leu His Asn Arg Tyr Thr Gln Lys Ser
305 310 315 320
Leu Ser Leu Ser Pro
325
<210> 61
<211> 325
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 61
Ala Ser Thr Lys Gly Pro Ser Val Phe Pro Leu Ala Pro Cys Ser Arg
1 5 10 15
Ser Thr Ser Glu Ser Thr Ala Ala Leu Gly Cys Leu Val Lys Asp Tyr
20 25 30
Phe Pro Glu Pro Val Thr Val Ser Trp Asn Ser Gly Ala Leu Thr Ser
35 40 45
Gly Val His Thr Phe Pro Ala Val Leu Gln Ser Ser Gly Leu Tyr Ser
50 55 60
Leu Ser Ser Val Val Thr Val Pro Ser Ser Ser Leu Gly Thr Gln Thr
65 70 75 80
Tyr Thr Cys Asn Val Asp His Lys Pro Ser Asn Thr Lys Val Asp Lys
85 90 95
Arg Val Glu Ser Lys Tyr Gly Pro Pro Cys Pro Pro Cys Pro Ala Pro
100 105 110
Glu Phe Arg Gly Gly Pro Lys Val Phe Leu Phe Pro Pro Lys Pro Lys
115 120 125
Asp Thr Leu Met Ile Ser Arg Thr Pro Glu Val Thr Cys Val Val Val
130 135 140
Asp Val Ser Gln Glu Asp Pro Glu Val Gln Phe Asn Trp Tyr Val Asp
145 150 155 160
Gly Val Glu Val His Asn Ala Lys Thr Lys Pro Arg Glu Glu Gln Phe
165 170 175
Ala Ser Thr Tyr Arg Val Val Ser Val Leu Thr Val Leu His Gln Asp
180 185 190
Trp Leu Asn Gly Lys Glu Tyr Lys Cys Lys Val Ser Asn Lys Gly Leu
195 200 205
Pro Ser Ser Ile Glu Lys Thr Ile Ser Lys Ala Lys Gly Gln Pro Arg
210 215 220
Glu Pro Gln Val Tyr Thr Leu Pro Pro Ser Gln Glu Glu Met Thr Lys
225 230 235 240
Asn Gln Val Ser Leu Thr Cys Leu Val Lys Gly Phe Tyr Pro Ser Asp
245 250 255
Ile Ala Val Glu Trp Glu Ser Asn Gly Gln Pro Glu Asn Asn Tyr Lys
260 265 270
Thr Thr Pro Pro Val Leu Asp Ser Asp Gly Ser Phe Phe Leu Tyr Ser
275 280 285
Lys Leu Thr Val Asp Lys Ser Arg Trp Gln Glu Gly Asn Val Phe Ser
290 295 300
Cys Ser Val Met His Glu Ala Leu His Asn His Tyr Thr Gln Glu Ser
305 310 315 320
Leu Ser Leu Ser Pro
325
<210> 62
<211> 325
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 62
Ala Ser Thr Lys Gly Pro Ser Val Phe Pro Leu Ala Pro Cys Ser Arg
1 5 10 15
Ser Thr Ser Glu Ser Thr Ala Ala Leu Gly Cys Leu Val Lys Asp Tyr
20 25 30
Phe Pro Glu Pro Val Thr Val Ser Trp Asn Ser Gly Ala Leu Thr Ser
35 40 45
Gly Val His Thr Phe Pro Ala Val Leu Gln Ser Ser Gly Leu Tyr Ser
50 55 60
Leu Ser Ser Val Val Thr Val Pro Ser Ser Ser Leu Gly Thr Lys Thr
65 70 75 80
Tyr Thr Cys Asn Val Asp His Lys Pro Ser Asn Thr Lys Val Asp Lys
85 90 95
Arg Val Glu Ser Lys Tyr Gly Pro Pro Cys Pro Pro Cys Pro Ala Pro
100 105 110
Glu Phe Arg Gly Gly Pro Lys Val Phe Leu Phe Pro Pro Lys Pro Lys
115 120 125
Asp Thr Leu Met Ile Ser Arg Thr Pro Glu Val Thr Cys Val Val Val
130 135 140
Asp Val Ser Gln Glu Asp Pro Glu Val Gln Phe Asn Trp Tyr Val Asp
145 150 155 160
Gly Val Glu Val His Asn Ala Lys Thr Lys Pro Arg Glu Glu Gln Phe
165 170 175
Ala Ser Thr Tyr Arg Val Val Ser Val Leu Thr Val Leu His Gln Asp
180 185 190
Trp Leu Asn Gly Lys Glu Tyr Lys Cys Lys Val Ser Asn Lys Gly Leu
195 200 205
Pro Ser Ser Ile Glu Lys Thr Ile Ser Lys Ala Lys Gly Gln Pro Arg
210 215 220
Glu Pro Gln Val Tyr Thr Leu Pro Pro Ser Gln Lys Glu Met Thr Lys
225 230 235 240
Asn Gln Val Ser Leu Thr Cys Leu Val Lys Gly Phe Tyr Pro Ser Asp
245 250 255
Ile Ala Val Glu Trp Glu Ser Asn Gly Gln Pro Glu Asn Asn Tyr Lys
260 265 270
Thr Thr Pro Pro Val Leu Asp Ser Asp Gly Ser Phe Phe Leu Tyr Ser
275 280 285
Lys Leu Thr Val Asp Lys Ser Arg Trp Gln Glu Gly Asn Val Phe Ser
290 295 300
Cys Ser Val Met His Glu Ala Leu His Asn His Tyr Thr Gln Lys Ser
305 310 315 320
Leu Ser Leu Ser Pro
325
<210> 63
<211> 107
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 63
Arg Thr Val Ala Ala Pro Ser Val Phe Ile Phe Pro Pro Ser Asp Glu
1 5 10 15
Gln Leu Lys Ser Gly Thr Ala Ser Val Val Cys Leu Leu Asn Asn Phe
20 25 30
Tyr Pro Arg Glu Ala Lys Val Gln Trp Lys Val Asp Asn Ala Leu Gln
35 40 45
Ser Gly Asn Ser Gln Glu Ser Val Thr Glu Gln Asp Ser Lys Asp Ser
50 55 60
Thr Tyr Ser Leu Ser Ser Thr Leu Thr Leu Ser Lys Ala Asp Tyr Glu
65 70 75 80
Lys His Lys Val Tyr Ala Cys Glu Val Thr His Gln Gly Leu Ser Ser
85 90 95
Pro Val Thr Lys Ser Phe Asn Arg Gly Glu Cys
100 105
<210> 64
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 64
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Ala Lys Ser Asn Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Gly Ala Tyr Tyr Gly Val Asp Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 65
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 65
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Ala Lys Ser Asn Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Asp Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Gly Ala Tyr Tyr Gly Val Gln Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 66
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 66
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Ala Lys Ser Asn Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Gly Ala Tyr Tyr Gly Val Gln Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 67
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 67
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Val Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Ala Lys Ser Asn Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Leu Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Gly Ala Tyr Tyr Gly Val Gln Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 68
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 68
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Val Val Gln Pro Gly Gly
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Ala Lys Ser Asn Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Asp Asp Ser Lys Asn Ser
65 70 75 80
Leu Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Gly Ala Tyr Tyr Gly Val Asp Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 69
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 69
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Ala Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Gly Ala Tyr Tyr Gly Val Asp Ile Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 70
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 70
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Ser Lys Ser Asn Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Gly Ala Tyr Tyr Gly Val Asp Ile Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 71
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 71
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Gly Lys Ser Asn Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Gly Ala Tyr Tyr Gly Val Asp Ile Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 72
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 72
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Ala Lys Ser Asn Asn Tyr Ala Thr Tyr Tyr Ala Pro
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Gly Ala Tyr Tyr Gly Val Asp Ile Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 73
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 73
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Ala Lys Ser Asn Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ser Ala Tyr Tyr Gly Val Asp Ile Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 74
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 74
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Ala Lys Ser Asn Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Gly Ala Ser Tyr Gly Val Asp Ile Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 75
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 75
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Ala Lys Ser Asn Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Tyr Tyr Ser Tyr Gly Val Asp Ile Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 76
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 76
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Gly Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Gly Ala Tyr Tyr Gly Val Asp Ile Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 77
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 77
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Gly Lys Ser Asn Asn Tyr Ala Thr Tyr Tyr Ala Pro
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Gly Ala Tyr Tyr Gly Val Asp Ile Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 78
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 78
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Gly Lys Ser Asn Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ser Ala Ser Tyr Gly Val Asp Ile Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 79
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 79
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Gly Lys Ser Asn Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ser Tyr Ser Tyr Gly Val Asp Ile Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 80
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 80
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Gly
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Ala Lys Ser Asn Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Gly Ala Tyr Tyr Gly Val Asp Ile Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 81
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 81
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Gly
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Gly Lys Ser Asn Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ser Ala Ser Tyr Gly Val Asp Ile Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 82
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 82
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Gly Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ser Ala Ser Tyr Gly Val Asp Ile Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 83
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 83
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Gly Lys Ser Asn Asn Tyr Ala Thr Tyr Tyr Ala Pro
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ser Ala Ser Tyr Gly Val Asp Ile Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 84
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 84
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Gly Lys Ser Asn Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ser Ala Ser Tyr Gly Val Asp Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 85
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 85
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Gly
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Gly Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Pro
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ser Ala Ser Tyr Gly Val Asp Ile Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 86
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 86
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Gly
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Gly Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ser Ala Ser Tyr Gly Val Asp Ile Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 87
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 87
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Gly
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Gly Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ser Ala Ser Tyr Gly Val Asp Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 88
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 88
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Ser Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ser Ala Ser Tyr Gly Val Asp Ile Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 89
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 89
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Gly
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Ser Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ser Ala Ser Tyr Gly Val Asp Ile Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 90
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 90
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Gly
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Ser Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ser Ala Ser Tyr Gly Val Asp Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 91
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 91
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Val Val Gln Pro Gly Gly
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Ser Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ser Ala Ser Tyr Gly Val Asp Ile Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 92
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 92
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ser Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Gly Lys Ser Asn Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ser Ala Ser Tyr Gly Val Asp Ile Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 93
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 93
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Val Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Gly Lys Ser Asn Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ser Ala Ser Tyr Gly Val Asp Ile Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 94
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 94
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Val Val Gln Pro Gly Gly
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Gly Lys Ser Asn Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ser Ala Ser Tyr Gly Val Asp Ile Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 95
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 95
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Ser Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ser Ala Ser Tyr Gly Val Asp Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 96
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 96
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Ser Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ser Ala Ser Tyr Gly Val Asp Tyr Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 97
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 97
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Gly Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ser Ala Ser Tyr Gly Val Asp Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 98
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 98
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Gly Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ser Ala Ser Tyr Gly Val Asp Tyr Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 99
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 99
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Gly Lys Ser Asn Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ser Ala Ser Tyr Gly Val Asp Tyr Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 100
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 100
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met Pro Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Gly Lys Ser Asn Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ser Ala Ser Tyr Gly Val Asp Ile Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 101
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 101
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Asn Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ser Ala Ser Tyr Gly Val Asp Ile Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 102
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 102
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ser Ala Ser Tyr Gly Val Asp Ile Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 103
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 103
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ser Ala Ser Tyr Gly Val Asp Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 104
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 104
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ser Ala Ser Tyr Gly Val Asp Tyr Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 105
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 105
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Val Val Gln Pro Gly Gly
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ser Ala Ser Tyr Gly Val Asp Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 106
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 106
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ser Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Asn Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ser Ala Ser Tyr Gly Val Asp Ile Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 107
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 107
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ser Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ser Ala Ser Tyr Gly Val Asp Ile Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 108
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 108
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ser Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ser Ala Ser Tyr Gly Val Asp Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 109
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 109
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ser Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ser Ala Ser Tyr Gly Val Asp Tyr Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 110
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 110
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Asn Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Asp Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ser Ala Ser Tyr Gly Val Asp Ile Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 111
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 111
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Asp Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ser Ala Ser Tyr Gly Val Asp Ile Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 112
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 112
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Asp Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ser Ala Ser Tyr Gly Val Asp Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 113
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 113
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Asp Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ser Ala Ser Tyr Gly Val Asp Tyr Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 114
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 114
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Asn Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Leu Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ser Ala Ser Tyr Gly Val Asp Ile Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 115
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 115
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Leu Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ser Ala Ser Tyr Gly Val Asp Ile Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 116
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 116
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Leu Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ser Ala Ser Tyr Gly Val Asp Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 117
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 117
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Leu Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ser Ala Ser Tyr Gly Val Asp Tyr Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 118
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 118
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Asn Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Asp Asp Ser Lys Asn Ser
65 70 75 80
Leu Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ser Ala Ser Tyr Gly Val Asp Ile Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 119
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 119
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Asp Asp Ser Lys Asn Ser
65 70 75 80
Leu Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ser Ala Ser Tyr Gly Val Asp Ile Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 120
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 120
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Asp Asp Ser Lys Asn Ser
65 70 75 80
Leu Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ser Ala Ser Tyr Gly Val Asp Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 121
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 121
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Asp Asp Ser Lys Asn Ser
65 70 75 80
Leu Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ser Ala Ser Tyr Gly Val Asp Tyr Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 122
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 122
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ala Ala Ser Tyr Gly Val Asp Ile Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 123
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 123
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ala Ala Ser Tyr Gly Val Asp Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 124
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 124
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Val Val Gln Pro Gly Gly
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ala Ala Ser Tyr Gly Val Asp Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 125
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 125
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ser Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ala Ala Ser Tyr Gly Val Asp Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 126
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 126
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Asp Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ala Ala Ser Tyr Gly Val Asp Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 127
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 127
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Leu Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ala Ala Ser Tyr Gly Val Asp Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 128
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 128
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Asp Asp Ser Lys Asn Ser
65 70 75 80
Leu Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ala Ala Ser Tyr Gly Val Asp Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 129
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 129
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Val Val Gln Pro Gly Gly
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Asp Asp Ser Lys Asn Ser
65 70 75 80
Leu Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ala Ala Ser Tyr Gly Val Asp Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 130
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 130
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Val Val Gln Pro Gly Gly
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Asp Asp Ser Lys Asn Ser
65 70 75 80
Leu Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ala Ala Ser Tyr Gly Val Asp Ile Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 131
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 131
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Val Val Gln Pro Gly Gly
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Asp Asp Ser Lys Asn Ser
65 70 75 80
Leu Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ala Ala Ser Tyr Gly Val Asp Tyr Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 132
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 132
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Asn Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ala Ala Ser Tyr Gly Val Asp Ile Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 133
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 133
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ala Ala Ser Tyr Gly Val Asp Ile Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 134
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 134
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Asp Asp Ser Lys Asn Ser
65 70 75 80
Leu Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ala Ala Ser Tyr Gly Val Asp Ile Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 135
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 135
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Val Val Gln Pro Gly Gly
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ala Ala Ser Tyr Gly Val Asp Ile Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 136
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 136
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Asp Asp Ser Lys Asn Ser
65 70 75 80
Leu Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ala Ala Ser Tyr Gly Val Asp Tyr Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 137
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 137
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Val Val Gln Pro Gly Gly
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ala Ala Ser Tyr Gly Val Asp Tyr Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 138
<211> 124
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 138
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Asn Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ala Ala Ala Glu Met Val Arg Asp Asp
100 105 110
Ile Trp Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 139
<211> 128
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 139
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Asn Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ala Ala Ala Glu Met Val Arg Asp Ser
100 105 110
Tyr Gly Val Asp Ile Trp Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120 125
<210> 140
<211> 128
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 140
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Asn Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ala Ala Val Arg Arg Arg Leu Ser Ser
100 105 110
Tyr Gly Val Asp Ile Trp Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120 125
<210> 141
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 141
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ala Ala Gly Tyr Gly Val Asp Ile Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 142
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 142
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Asp Asp Ser Lys Asn Ser
65 70 75 80
Leu Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ala Ala Gly Tyr Gly Val Asp Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 143
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 143
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Asn Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ala Ala Gly Tyr Gly Val Asp Ile Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 144
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 144
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Val Val Gln Pro Gly Gly
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ala Ala Gly Tyr Gly Val Asp Ile Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 145
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 145
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Gly
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Asp Asp Ser Lys Asn Ser
65 70 75 80
Leu Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ala Ala Gly Tyr Gly Val Asp Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 146
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 146
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Lys Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Asp Asp Ser Lys Asn Ser
65 70 75 80
Leu Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ala Ala Gly Tyr Gly Val Asp Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 147
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 147
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Ala Gly Arg Phe Thr Ile Ser Arg Asp Asp Ser Lys Asn Ser
65 70 75 80
Leu Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ala Ala Gly Tyr Gly Val Asp Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 148
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 148
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Gln Gly Arg Phe Thr Ile Ser Arg Asp Asp Ser Lys Asn Ser
65 70 75 80
Leu Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ala Ala Gly Tyr Gly Val Asp Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 149
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 149
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Ser Gly Arg Phe Thr Ile Ser Arg Asp Asp Ser Lys Asn Ser
65 70 75 80
Leu Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ala Ala Gly Tyr Gly Val Asp Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 150
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 150
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Phe Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Asp Asp Ser Lys Asn Ser
65 70 75 80
Leu Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ala Ala Gly Tyr Gly Val Asp Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 151
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 151
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Gly Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Asp Asp Ser Lys Asn Ser
65 70 75 80
Leu Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ala Ala Gly Tyr Gly Val Asp Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 152
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 152
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Leu Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Asp Asp Ser Lys Asn Ser
65 70 75 80
Leu Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ala Ala Gly Tyr Gly Val Asp Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 153
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 153
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Pro Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Asp Asp Ser Lys Asn Ser
65 70 75 80
Leu Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ala Ala Gly Tyr Gly Val Asp Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 154
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 154
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Gln Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Asp Asp Ser Lys Asn Ser
65 70 75 80
Leu Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ala Ala Gly Tyr Gly Val Asp Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 155
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 155
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Ser Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Asp Asp Ser Lys Asn Ser
65 70 75 80
Leu Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ala Ala Gly Tyr Gly Val Asp Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 156
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 156
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Val Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Asp Asp Ser Lys Asn Ser
65 70 75 80
Leu Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ala Ala Gly Tyr Gly Val Asp Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 157
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 157
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Thr Tyr Phe Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Asp Asp Ser Lys Asn Ser
65 70 75 80
Leu Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ala Ala Gly Tyr Gly Val Asp Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 158
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 158
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Thr Tyr Gly Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Asp Asp Ser Lys Asn Ser
65 70 75 80
Leu Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ala Ala Gly Tyr Gly Val Asp Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 159
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 159
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Thr Tyr Ile Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Asp Asp Ser Lys Asn Ser
65 70 75 80
Leu Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ala Ala Gly Tyr Gly Val Asp Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 160
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 160
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Thr Tyr Leu Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Asp Asp Ser Lys Asn Ser
65 70 75 80
Leu Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ala Ala Gly Tyr Gly Val Asp Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 161
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 161
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Thr Tyr Pro Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Asp Asp Ser Lys Asn Ser
65 70 75 80
Leu Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ala Ala Gly Tyr Gly Val Asp Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 162
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 162
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Thr Tyr Gln Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Asp Asp Ser Lys Asn Ser
65 70 75 80
Leu Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ala Ala Gly Tyr Gly Val Asp Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 163
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 163
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Thr Tyr Thr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Asp Asp Ser Lys Asn Ser
65 70 75 80
Leu Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ala Ala Gly Tyr Gly Val Asp Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 164
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 164
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Thr Tyr Val Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Asp Asp Ser Lys Asn Ser
65 70 75 80
Leu Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ala Ala Gly Tyr Gly Val Asp Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 165
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 165
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Val Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Lys Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Asp Asp Ser Lys Asn Ser
65 70 75 80
Leu Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ala Ala Gly Tyr Gly Val Asp Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 166
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 166
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Val Val Gln Pro Gly Gly
1 5 10 15
Ser Leu Lys Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ala Ala Gly Tyr Gly Val Asp Ile Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 167
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 167
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Val Val Gln Pro Gly Gly
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Gln Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ala Ala Gly Tyr Gly Val Asp Ile Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 168
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 168
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Val Val Gln Pro Gly Gly
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Thr Tyr Val Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ala Ala Gly Tyr Gly Val Asp Ile Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 169
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 169
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Val Val Gln Pro Gly Gly
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Ser Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ala Ala Gly Tyr Gly Val Asp Ile Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 170
<211> 115
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 170
Gln Val Gln Leu Val Gln Ser Gly Ala Glu Val Lys Lys Pro Gly Ala
1 5 10 15
Ser Val Lys Val Ser Cys Lys Ala Ser Gly Tyr Thr Phe Thr Asp Tyr
20 25 30
Glu Met His Trp Ile Arg Gln Pro Pro Gly Gln Gly Leu Glu Trp Ile
35 40 45
Gly Ala Ile Asp Gly Asp Thr Pro Asp Thr Ala Tyr Ser Gln Lys Phe
50 55 60
Lys Gly Arg Val Thr Leu Thr Ala Asp Lys Ser Thr Ser Thr Ala Tyr
65 70 75 80
Met Glu Leu Ser Ser Leu Thr Ser Glu Asp Thr Ala Val Tyr Tyr Cys
85 90 95
Thr Arg Phe Tyr Ser Tyr Thr Tyr Trp Gly Gln Gly Thr Leu Val Thr
100 105 110
Val Ser Ser
115
<210> 171
<211> 115
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 171
Gln Val Gln Leu Val Gln Ser Gly Ala Glu Val Lys Lys Pro Gly Ala
1 5 10 15
Ser Val Lys Val Ser Cys Lys Ala Ser Gly Tyr Thr Phe Thr Asp Tyr
20 25 30
Glu Met His Trp Ile Arg Gln Pro Pro Gly Gln Gly Leu Glu Trp Ile
35 40 45
Gly Ala Ile Asp Gly Lys Thr Pro Asp Thr Ala Glu Ser Gln Lys Phe
50 55 60
Lys Gly Arg Val Thr Leu Thr Ala Asp Lys Ser Thr Ser Thr Ala Tyr
65 70 75 80
Met Glu Leu Ser Ser Leu Thr Ser Glu Asp Thr Ala Val Tyr Tyr Cys
85 90 95
Thr Arg Phe Tyr Ser Tyr Thr Tyr Trp Gly Gln Gly Thr Leu Val Thr
100 105 110
Val Ser Ser
115
<210> 172
<211> 115
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 172
Gln Val Gln Leu Val Gln Ser Gly Ala Glu Val Lys Lys Pro Gly Ala
1 5 10 15
Ser Val Lys Val Ser Cys Lys Ala Ser Gly Tyr Thr Phe Thr Asp Tyr
20 25 30
Glu Met His Trp Ile Arg Gln Pro Pro Gly Gln Gly Leu Glu Trp Ile
35 40 45
Gly Ala Ile Asp Gly Lys Thr Pro Asp Thr Ala Tyr Glu Gln Lys Phe
50 55 60
Lys Gly Arg Val Thr Leu Thr Ala Asp Lys Ser Thr Ser Thr Ala Tyr
65 70 75 80
Met Glu Leu Ser Ser Leu Thr Ser Glu Asp Thr Ala Val Tyr Tyr Cys
85 90 95
Thr Arg Phe Tyr Ser Tyr Thr Tyr Trp Gly Gln Gly Thr Leu Val Thr
100 105 110
Val Ser Ser
115
<210> 173
<211> 115
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 173
Gln Val Gln Leu Val Gln Ser Gly Ala Glu Val Lys Lys Pro Gly Ala
1 5 10 15
Ser Val Lys Val Ser Cys Lys Ala Ser Gly Tyr Thr Phe Thr Asp Tyr
20 25 30
Glu Met His Trp Ile Arg Gln Pro Pro Gly Gln Gly Leu Glu Trp Ile
35 40 45
Gly Ala Ile Asp Gly Lys Thr Pro Asp Thr Ala Tyr Ser Asp Lys Phe
50 55 60
Lys Gly Arg Val Thr Leu Thr Ala Asp Lys Ser Thr Ser Thr Ala Tyr
65 70 75 80
Met Glu Leu Ser Ser Leu Thr Ser Glu Asp Thr Ala Val Tyr Tyr Cys
85 90 95
Thr Arg Phe Tyr Ser Tyr Thr Tyr Trp Gly Gln Gly Thr Leu Val Thr
100 105 110
Val Ser Ser
115
<210> 174
<211> 115
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 174
Gln Val Gln Leu Val Gln Ser Gly Ala Glu Val Lys Lys Pro Gly Ala
1 5 10 15
Ser Val Lys Val Ser Cys Lys Ala Ser Gly Tyr Thr Phe Thr Asp Tyr
20 25 30
Glu Met His Trp Ile Arg Gln Pro Pro Gly Gln Gly Leu Glu Trp Ile
35 40 45
Gly Ala Ile Asp Gly Glu Thr Pro Asp Thr Ala Tyr Ser Gln Lys Phe
50 55 60
Lys Gly Arg Val Thr Leu Thr Ala Asp Lys Ser Thr Ser Thr Ala Tyr
65 70 75 80
Met Glu Leu Ser Ser Leu Thr Ser Glu Asp Thr Ala Val Tyr Tyr Cys
85 90 95
Thr Arg Phe Tyr Ser Tyr Thr Tyr Trp Gly Gln Gly Thr Leu Val Thr
100 105 110
Val Ser Ser
115
<210> 175
<211> 115
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 175
Gln Val Gln Leu Val Gln Ser Gly Ala Glu Val Lys Lys Pro Gly Ala
1 5 10 15
Ser Val Lys Val Ser Cys Lys Ala Ser Gly Tyr Thr Phe Thr Asp Tyr
20 25 30
Glu Met His Trp Ile Arg Gln Pro Pro Gly Gln Gly Leu Glu Trp Ile
35 40 45
Gly Ala Ile Asp Gly Asp Thr Pro Asp Thr Ala Tyr Glu Gln Lys Phe
50 55 60
Lys Gly Arg Val Thr Leu Thr Ala Asp Lys Ser Thr Ser Thr Ala Tyr
65 70 75 80
Met Glu Leu Ser Ser Leu Thr Ser Glu Asp Thr Ala Val Tyr Tyr Cys
85 90 95
Thr Arg Phe Tyr Ser Tyr Thr Tyr Trp Gly Gln Gly Thr Leu Val Thr
100 105 110
Val Ser Ser
115
<210> 176
<211> 115
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 176
Gln Val Gln Leu Val Gln Ser Gly Ala Glu Val Lys Lys Pro Gly Ala
1 5 10 15
Ser Val Lys Val Ser Cys Lys Ala Ser Gly Tyr Thr Phe Thr Asp Tyr
20 25 30
Glu Met His Trp Ile Arg Gln Pro Pro Gly Gln Gly Leu Glu Trp Ile
35 40 45
Gly Ala Ile Asp Gly Lys Thr Pro Asp Thr Ala Glu Glu Gln Lys Phe
50 55 60
Lys Gly Arg Val Thr Leu Thr Ala Asp Lys Ser Thr Ser Thr Ala Tyr
65 70 75 80
Met Glu Leu Ser Ser Leu Thr Ser Glu Asp Thr Ala Val Tyr Tyr Cys
85 90 95
Thr Arg Phe Tyr Ser Tyr Thr Tyr Trp Gly Gln Gly Thr Leu Val Thr
100 105 110
Val Ser Ser
115
<210> 177
<211> 115
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 177
Gln Val Gln Leu Val Gln Ser Gly Ala Glu Val Lys Lys Pro Gly Ala
1 5 10 15
Ser Val Thr Val Ser Cys Lys Ala Ser Gly Tyr Thr Phe Thr Asp Tyr
20 25 30
Glu Met His Trp Ile Arg Gln Pro Pro Gly Gln Gly Leu Glu Trp Ile
35 40 45
Gly Ala Ile Asp Gly Lys Thr Pro Asp Thr Ala Tyr Glu Gln Lys Phe
50 55 60
Lys Gly Arg Val Thr Leu Thr Ala Asp Lys Ser Thr Ser Thr Ala Tyr
65 70 75 80
Met Glu Leu Ser Ser Leu Thr Ser Glu Asp Thr Ala Val Tyr Tyr Cys
85 90 95
Thr Arg Phe Tyr Ser Tyr Thr Tyr Trp Gly Gln Gly Thr Leu Val Thr
100 105 110
Val Ser Ser
115
<210> 178
<211> 115
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 178
Gln Val Gln Leu Val Gln Ser Gly Ala Glu Val Lys Lys Pro Gly Ala
1 5 10 15
Ser Val Lys Val Ser Cys Lys Ala Ser Gly Tyr Thr Phe Thr Asp Tyr
20 25 30
Glu Met His Trp Ile Arg Gln Pro Pro Gly Glu Gly Leu Glu Trp Ile
35 40 45
Gly Ala Ile Asp Gly Lys Thr Pro Asp Thr Ala Tyr Glu Gln Lys Phe
50 55 60
Lys Gly Arg Val Thr Leu Thr Ala Asp Lys Ser Thr Ser Thr Ala Tyr
65 70 75 80
Met Glu Leu Ser Ser Leu Thr Ser Glu Asp Thr Ala Val Tyr Tyr Cys
85 90 95
Thr Arg Phe Tyr Ser Tyr Thr Tyr Trp Gly Gln Gly Thr Leu Val Thr
100 105 110
Val Ser Ser
115
<210> 179
<211> 115
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 179
Gln Val Gln Leu Val Gln Ser Gly Ala Glu Val Lys Lys Pro Gly Ala
1 5 10 15
Ser Val Lys Val Ser Cys Lys Ala Ser Gly Tyr Thr Phe Thr Asp Tyr
20 25 30
Glu Met His Trp Ile Arg Gln Pro Pro Gly Gln Gly Leu Glu Trp Ile
35 40 45
Gly Ala Ile Asp Gly Lys Thr Pro Asp Thr Ala Tyr Glu Glu Ser Phe
50 55 60
Lys Gly Arg Val Thr Leu Thr Ala Asp Lys Ser Thr Ser Thr Ala Tyr
65 70 75 80
Met Glu Leu Ser Ser Leu Thr Ser Glu Asp Thr Ala Val Tyr Tyr Cys
85 90 95
Thr Arg Phe Tyr Ser Tyr Thr Tyr Trp Gly Gln Gly Thr Leu Val Thr
100 105 110
Val Ser Ser
115
<210> 180
<211> 115
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 180
Gln Val Gln Leu Val Gln Ser Gly Ala Glu Val Lys Lys Pro Gly Ala
1 5 10 15
Ser Val Lys Val Ser Cys Lys Ala Ser Gly Tyr Thr Phe Thr Asp Tyr
20 25 30
Glu Met His Trp Ile Arg Gln Pro Pro Gly Gln Gly Leu Glu Trp Ile
35 40 45
Gly Ala Ile Asp Gly Lys Thr Pro Asp Thr Ala Tyr Glu Gln Lys Phe
50 55 60
Gln Asp Arg Val Thr Leu Thr Ala Asp Lys Ser Thr Ser Thr Ala Tyr
65 70 75 80
Met Glu Leu Ser Ser Leu Thr Ser Glu Asp Thr Ala Val Tyr Tyr Cys
85 90 95
Thr Arg Phe Tyr Ser Tyr Thr Tyr Trp Gly Gln Gly Thr Leu Val Thr
100 105 110
Val Ser Ser
115
<210> 181
<211> 115
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 181
Gln Val Gln Leu Val Gln Ser Gly Ala Glu Val Lys Lys Pro Gly Ala
1 5 10 15
Ser Val Thr Val Ser Cys Lys Ala Ser Gly Tyr Thr Phe Thr Asp Tyr
20 25 30
Glu Met His Trp Ile Arg Gln Pro Pro Gly Glu Gly Leu Glu Trp Ile
35 40 45
Gly Ala Ile Asp Gly Lys Thr Pro Asp Thr Ala Tyr Glu Gln Lys Phe
50 55 60
Lys Gly Arg Val Thr Leu Thr Ala Asp Lys Ser Thr Ser Thr Ala Tyr
65 70 75 80
Met Glu Leu Ser Ser Leu Thr Ser Glu Asp Thr Ala Val Tyr Tyr Cys
85 90 95
Thr Arg Phe Tyr Ser Tyr Thr Tyr Trp Gly Gln Gly Thr Leu Val Thr
100 105 110
Val Ser Ser
115
<210> 182
<211> 115
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 182
Gln Val Gln Leu Val Gln Ser Gly Ala Glu Val Lys Lys Pro Gly Ala
1 5 10 15
Ser Val Thr Val Ser Cys Lys Ala Ser Gly Tyr Thr Phe Thr Asp Tyr
20 25 30
Glu Met His Trp Ile Arg Gln Pro Pro Gly Gln Gly Leu Glu Trp Ile
35 40 45
Gly Ala Ile Asp Gly Glu Thr Pro Asp Thr Ala Tyr Ser Gln Lys Phe
50 55 60
Lys Gly Arg Val Thr Leu Thr Ala Asp Lys Ser Thr Ser Thr Ala Tyr
65 70 75 80
Met Glu Leu Ser Ser Leu Thr Ser Glu Asp Thr Ala Val Tyr Tyr Cys
85 90 95
Thr Arg Phe Tyr Ser Tyr Thr Tyr Trp Gly Gln Gly Thr Leu Val Thr
100 105 110
Val Ser Ser
115
<210> 183
<211> 115
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 183
Gln Val Gln Leu Val Gln Ser Gly Ala Glu Val Lys Lys Pro Gly Ala
1 5 10 15
Ser Val Lys Val Ser Cys Lys Ala Ser Gly Tyr Thr Phe Thr Asp Tyr
20 25 30
Glu Met His Trp Ile Arg Gln Pro Pro Gly Glu Gly Leu Glu Trp Ile
35 40 45
Gly Ala Ile Asp Gly Glu Thr Pro Asp Thr Ala Tyr Ser Gln Lys Phe
50 55 60
Lys Gly Arg Val Thr Leu Thr Ala Asp Lys Ser Thr Ser Thr Ala Tyr
65 70 75 80
Met Glu Leu Ser Ser Leu Thr Ser Glu Asp Thr Ala Val Tyr Tyr Cys
85 90 95
Thr Arg Phe Tyr Ser Tyr Thr Tyr Trp Gly Gln Gly Thr Leu Val Thr
100 105 110
Val Ser Ser
115
<210> 184
<211> 115
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 184
Gln Val Gln Leu Val Gln Ser Gly Ala Glu Val Lys Lys Pro Gly Ala
1 5 10 15
Ser Val Thr Val Ser Cys Lys Ala Ser Gly Tyr Thr Phe Thr Asp Tyr
20 25 30
Glu Met His Trp Ile Arg Gln Pro Pro Gly Glu Gly Leu Glu Trp Ile
35 40 45
Gly Ala Ile Asp Gly Glu Thr Pro Asp Thr Ala Tyr Ser Gln Lys Phe
50 55 60
Lys Gly Arg Val Thr Leu Thr Ala Asp Lys Ser Thr Ser Thr Ala Tyr
65 70 75 80
Met Glu Leu Ser Ser Leu Thr Ser Glu Asp Thr Ala Val Tyr Tyr Cys
85 90 95
Thr Arg Phe Tyr Ser Tyr Thr Tyr Trp Gly Gln Gly Thr Leu Val Thr
100 105 110
Val Ser Ser
115
<210> 185
<211> 115
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 185
Gln Val Gln Leu Val Gln Ser Gly Ala Glu Val Lys Lys Pro Gly Ala
1 5 10 15
Ser Val Lys Val Ser Cys Lys Ala Ser Gly Tyr Thr Phe Thr Asp Tyr
20 25 30
Glu Met His Trp Ile Arg Gln Pro Pro Gly Gln Gly Leu Glu Trp Ile
35 40 45
Gly Ala Ile Asp Gly Glu Thr Pro Asp Thr Ala Tyr Ser Glu Ser Phe
50 55 60
Lys Gly Arg Val Thr Leu Thr Ala Asp Lys Ser Thr Ser Thr Ala Tyr
65 70 75 80
Met Glu Leu Ser Ser Leu Thr Ser Glu Asp Thr Ala Val Tyr Tyr Cys
85 90 95
Thr Arg Phe Tyr Ser Tyr Thr Tyr Trp Gly Gln Gly Thr Leu Val Thr
100 105 110
Val Ser Ser
115
<210> 186
<211> 115
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 186
Gln Val Gln Leu Val Gln Ser Gly Ala Glu Val Lys Lys Pro Gly Ala
1 5 10 15
Ser Val Lys Val Ser Cys Lys Ala Ser Gly Tyr Glu Phe Thr Asp Tyr
20 25 30
Glu Met His Trp Ile Arg Gln Pro Pro Gly Gln Gly Leu Glu Trp Ile
35 40 45
Gly Ala Ile Asp Gly Lys Thr Pro Asp Thr Ala Tyr Ser Gln Lys Phe
50 55 60
Lys Gly Arg Val Thr Leu Thr Ala Asp Lys Ser Thr Ser Thr Ala Tyr
65 70 75 80
Met Glu Leu Ser Ser Leu Thr Ser Glu Asp Thr Ala Val Tyr Tyr Cys
85 90 95
Thr Arg Phe Tyr Ser Tyr Thr Tyr Trp Gly Gln Gly Thr Leu Val Thr
100 105 110
Val Ser Ser
115
<210> 187
<211> 115
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 187
Gln Val Gln Leu Val Gln Ser Gly Ala Glu Val Lys Lys Pro Gly Ala
1 5 10 15
Ser Val Lys Val Ser Cys Lys Ala Ser Gly Tyr Thr Phe Glu Asp Tyr
20 25 30
Glu Met His Trp Ile Arg Gln Pro Pro Gly Gln Gly Leu Glu Trp Ile
35 40 45
Gly Ala Ile Asp Gly Lys Thr Pro Asp Thr Ala Tyr Ser Gln Lys Phe
50 55 60
Lys Gly Arg Val Thr Leu Thr Ala Asp Lys Ser Thr Ser Thr Ala Tyr
65 70 75 80
Met Glu Leu Ser Ser Leu Thr Ser Glu Asp Thr Ala Val Tyr Tyr Cys
85 90 95
Thr Arg Phe Tyr Ser Tyr Thr Tyr Trp Gly Gln Gly Thr Leu Val Thr
100 105 110
Val Ser Ser
115
<210> 188
<211> 115
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 188
Gln Val Gln Leu Val Gln Ser Gly Ala Glu Val Lys Lys Pro Gly Ala
1 5 10 15
Ser Val Lys Val Ser Cys Lys Ala Ser Gly Tyr Thr Phe Thr Asp Tyr
20 25 30
Glu Met His Trp Ile Arg Gln Pro Pro Gly Gln Gly Leu Glu Trp Ile
35 40 45
Gly Ala Ile Asp Gly Lys Thr Pro Asp Thr Ala Tyr Ser Glu Lys Phe
50 55 60
Lys Gly Arg Val Thr Leu Thr Ala Asp Lys Ser Thr Ser Thr Ala Tyr
65 70 75 80
Met Glu Leu Ser Ser Leu Thr Ser Glu Asp Thr Ala Val Tyr Tyr Cys
85 90 95
Thr Arg Phe Tyr Ser Tyr Thr Tyr Trp Gly Gln Gly Thr Leu Val Thr
100 105 110
Val Ser Ser
115
<210> 189
<211> 115
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 189
Gln Val Gln Leu Val Gln Ser Gly Ala Glu Val Lys Lys Pro Gly Ala
1 5 10 15
Ser Val Lys Val Ser Cys Lys Ala Ser Gly Tyr Thr Phe Thr Asp Tyr
20 25 30
Glu Met His Trp Ile Arg Gln Pro Pro Gly Gln Gly Leu Glu Trp Ile
35 40 45
Gly Ala Ile Asp Gly Lys Thr Pro Asp Thr Ala Tyr Ser Gln Lys Phe
50 55 60
Glu Gly Arg Val Thr Leu Thr Ala Asp Lys Ser Thr Ser Thr Ala Tyr
65 70 75 80
Met Glu Leu Ser Ser Leu Thr Ser Glu Asp Thr Ala Val Tyr Tyr Cys
85 90 95
Thr Arg Phe Tyr Ser Tyr Thr Tyr Trp Gly Gln Gly Thr Leu Val Thr
100 105 110
Val Ser Ser
115
<210> 190
<211> 115
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 190
Gln Val Gln Leu Val Gln Ser Gly Ala Glu Val Lys Lys Pro Gly Ala
1 5 10 15
Ser Val Lys Val Ser Cys Lys Ala Ser Gly Tyr Thr Phe Thr Asp Tyr
20 25 30
Glu Met His Trp Ile Arg Gln Pro Pro Gly Gln Gly Leu Glu Trp Ile
35 40 45
Gly Ala Ile Asp Gly Lys Thr Pro Asp Thr Ala Tyr Ser Gln Lys Phe
50 55 60
Lys Gly Arg Val Glu Leu Thr Ala Asp Lys Ser Thr Ser Thr Ala Tyr
65 70 75 80
Met Glu Leu Ser Ser Leu Thr Ser Glu Asp Thr Ala Val Tyr Tyr Cys
85 90 95
Thr Arg Phe Tyr Ser Tyr Thr Tyr Trp Gly Gln Gly Thr Leu Val Thr
100 105 110
Val Ser Ser
115
<210> 191
<211> 115
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 191
Gln Val Gln Leu Val Gln Ser Gly Ala Glu Val Lys Lys Pro Gly Ala
1 5 10 15
Ser Val Lys Val Ser Cys Lys Ala Ser Gly Tyr Thr Phe Thr Asp Tyr
20 25 30
Glu Met His Trp Ile Arg Gln Pro Pro Gly Gln Gly Leu Glu Trp Ile
35 40 45
Gly Ala Ile Asp Gly Lys Thr Pro Asp Thr Ala Tyr Ser Gln Lys Phe
50 55 60
Lys Gly Arg Val Thr Leu Thr Ala Asp Lys Ser Thr Ser Thr Ala Tyr
65 70 75 80
Met Glu Leu Glu Ser Leu Thr Ser Glu Asp Thr Ala Val Tyr Tyr Cys
85 90 95
Thr Arg Phe Tyr Ser Tyr Thr Tyr Trp Gly Gln Gly Thr Leu Val Thr
100 105 110
Val Ser Ser
115
<210> 192
<211> 115
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 192
Gln Val Gln Leu Val Gln Ser Gly Ala Glu Val Lys Lys Pro Gly Ala
1 5 10 15
Ser Val Lys Val Ser Cys Lys Ala Ser Gly Tyr Thr Phe Thr Asp Tyr
20 25 30
Glu Met His Trp Ile Arg Gln Pro Pro Gly Gln Gly Leu Glu Trp Ile
35 40 45
Gly Ala Ile Asp Gly Lys Thr Pro Asp Thr Ala Tyr Ser Gln Lys Phe
50 55 60
Lys Gly Arg Val Thr Leu Thr Ala Asp Lys Ser Thr Ser Thr Ala Tyr
65 70 75 80
Met Glu Leu Ser Glu Leu Thr Ser Glu Asp Thr Ala Val Tyr Tyr Cys
85 90 95
Thr Arg Phe Tyr Ser Tyr Thr Tyr Trp Gly Gln Gly Thr Leu Val Thr
100 105 110
Val Ser Ser
115
<210> 193
<211> 115
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 193
Gln Val Gln Leu Val Gln Ser Gly Ala Glu Val Lys Lys Pro Gly Ala
1 5 10 15
Ser Val Lys Val Ser Cys Lys Ala Ser Gly Tyr Thr Phe Thr Asp Tyr
20 25 30
Glu Met His Trp Ile Arg Gln Pro Pro Gly Gln Gly Leu Glu Trp Ile
35 40 45
Gly Ala Ile Asp Gly Lys Thr Pro Asp Thr Ala Tyr Ser Gln Lys Phe
50 55 60
Lys Gly Arg Val Thr Leu Thr Ala Asp Lys Ser Thr Ser Thr Ala Tyr
65 70 75 80
Met Glu Leu Ser Ser Leu Thr Glu Glu Asp Thr Ala Val Tyr Tyr Cys
85 90 95
Thr Arg Phe Tyr Ser Tyr Thr Tyr Trp Gly Gln Gly Thr Leu Val Thr
100 105 110
Val Ser Ser
115
<210> 194
<211> 115
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 194
Gln Val Gln Leu Val Gln Ser Gly Ala Glu Val Lys Lys Pro Gly Ala
1 5 10 15
Ser Val Lys Val Ser Cys Lys Ala Ser Gly Tyr Thr Phe Thr Asp Tyr
20 25 30
Glu Met His Trp Ile Arg Gln Pro Pro Gly Gln Gly Leu Glu Trp Ile
35 40 45
Gly Ala Ile Asp Gly Lys Thr Pro Asp Thr Ala Tyr Ser Gln Lys Phe
50 55 60
Lys Gly Arg Val Thr Leu Thr Ala Asp Lys Ser Thr Ser Thr Ala Tyr
65 70 75 80
Met Glu Leu Ser Ser Leu Thr Ser Glu Asp Glu Ala Val Tyr Tyr Cys
85 90 95
Thr Arg Phe Tyr Ser Tyr Thr Tyr Trp Gly Gln Gly Thr Leu Val Thr
100 105 110
Val Ser Ser
115
<210> 195
<211> 115
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 195
Gln Val Gln Leu Val Gln Ser Gly Ala Glu Val Lys Lys Pro Gly Ala
1 5 10 15
Ser Val Lys Val Ser Cys Lys Ala Ser Gly Tyr Thr Phe Thr Asp Tyr
20 25 30
Glu Met His Trp Ile Arg Gln Pro Pro Gly Gln Gly Leu Glu Trp Ile
35 40 45
Gly Ala Ile Asp Gly Lys Thr Pro Asp Thr Ala Tyr Ser Gln Lys Phe
50 55 60
Lys Gly Arg Val Thr Leu Thr Ala Asp Lys Ser Thr Ser Thr Ala Tyr
65 70 75 80
Met Glu Leu Ser Ser Leu Thr Ser Glu Asp Thr Ala Glu Tyr Tyr Cys
85 90 95
Thr Arg Phe Tyr Ser Tyr Thr Tyr Trp Gly Gln Gly Thr Leu Val Thr
100 105 110
Val Ser Ser
115
<210> 196
<211> 115
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 196
Gln Val Gln Leu Val Gln Ser Gly Ala Glu Val Lys Lys Pro Gly Ala
1 5 10 15
Ser Val Thr Val Ser Cys Lys Ala Ser Gly Tyr Thr Phe Thr Asp Tyr
20 25 30
Glu Met His Trp Ile Arg Gln Pro Pro Gly Glu Gly Leu Glu Trp Ile
35 40 45
Gly Ala Ile Asp Gly Glu Thr Pro Asp Thr Ala Tyr Glu Gln Lys Phe
50 55 60
Lys Gly Arg Val Thr Leu Thr Ala Asp Lys Ser Thr Ser Thr Ala Tyr
65 70 75 80
Met Glu Leu Ser Ser Leu Thr Ser Glu Asp Thr Ala Val Tyr Tyr Cys
85 90 95
Thr Arg Phe Tyr Ser Tyr Thr Tyr Trp Gly Gln Gly Thr Leu Val Thr
100 105 110
Val Ser Ser
115
<210> 197
<211> 115
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 197
Gln Val Gln Leu Val Gln Ser Gly Ala Glu Val Lys Lys Pro Gly Ala
1 5 10 15
Ser Val Thr Val Ser Cys Lys Ala Ser Gly Tyr Thr Phe Thr Asp Tyr
20 25 30
Glu Met His Trp Ile Arg Gln Pro Pro Gly Glu Gly Leu Glu Trp Ile
35 40 45
Gly Ala Ile Asp Gly Glu Thr Pro Asp Thr Ala Tyr Ser Glu Lys Phe
50 55 60
Lys Gly Arg Val Thr Leu Thr Ala Asp Lys Ser Thr Ser Thr Ala Tyr
65 70 75 80
Met Glu Leu Ser Ser Leu Thr Ser Glu Asp Thr Ala Val Tyr Tyr Cys
85 90 95
Thr Arg Phe Tyr Ser Tyr Thr Tyr Trp Gly Gln Gly Thr Leu Val Thr
100 105 110
Val Ser Ser
115
<210> 198
<211> 115
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 198
Gln Val Gln Leu Val Gln Ser Gly Ala Glu Val Lys Lys Pro Gly Ala
1 5 10 15
Ser Val Thr Val Ser Cys Lys Ala Ser Gly Tyr Thr Phe Thr Asp Tyr
20 25 30
Glu Met His Trp Ile Arg Gln Pro Pro Gly Glu Gly Leu Glu Trp Ile
35 40 45
Gly Ala Ile Asp Gly Glu Thr Pro Asp Thr Ala Tyr Ser Asp Lys Phe
50 55 60
Lys Gly Arg Val Thr Leu Thr Ala Asp Lys Ser Thr Ser Thr Ala Tyr
65 70 75 80
Met Glu Leu Ser Ser Leu Thr Ser Glu Asp Thr Ala Val Tyr Tyr Cys
85 90 95
Thr Arg Phe Tyr Ser Tyr Thr Tyr Trp Gly Gln Gly Thr Leu Val Thr
100 105 110
Val Ser Ser
115
<210> 199
<211> 115
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 199
Gln Val Gln Leu Val Gln Ser Gly Ala Glu Val Lys Lys Pro Gly Ala
1 5 10 15
Ser Val Thr Val Ser Cys Lys Ala Ser Gly Tyr Thr Phe Thr Asp Tyr
20 25 30
Glu Met His Trp Ile Arg Gln Pro Pro Gly Glu Gly Leu Glu Trp Ile
35 40 45
Gly Ala Ile Asp Gly Glu Thr Pro Asp Thr Ala Tyr Ser Gln Lys Phe
50 55 60
Glu Gly Arg Val Thr Leu Thr Ala Asp Lys Ser Thr Ser Thr Ala Tyr
65 70 75 80
Met Glu Leu Ser Ser Leu Thr Ser Glu Asp Thr Ala Val Tyr Tyr Cys
85 90 95
Thr Arg Phe Tyr Ser Tyr Thr Tyr Trp Gly Gln Gly Thr Leu Val Thr
100 105 110
Val Ser Ser
115
<210> 200
<211> 115
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 200
Gln Val Gln Leu Val Gln Ser Gly Ala Glu Val Lys Lys Pro Gly Ala
1 5 10 15
Ser Val Thr Val Ser Cys Lys Ala Ser Gly Tyr Thr Phe Thr Asp Tyr
20 25 30
Glu Met His Trp Ile Arg Gln Pro Pro Gly Glu Gly Leu Glu Trp Ile
35 40 45
Gly Ala Ile Asp Gly Glu Thr Pro Asp Thr Ala Tyr Ser Glu Lys Phe
50 55 60
Glu Gly Arg Val Thr Leu Thr Ala Asp Lys Ser Thr Ser Thr Ala Tyr
65 70 75 80
Met Glu Leu Ser Ser Leu Thr Ser Glu Asp Thr Ala Val Tyr Tyr Cys
85 90 95
Thr Arg Phe Tyr Ser Tyr Thr Tyr Trp Gly Gln Gly Thr Leu Val Thr
100 105 110
Val Ser Ser
115
<210> 201
<211> 115
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 201
Gln Val Gln Leu Val Gln Ser Gly Ala Glu Val Lys Lys Pro Gly Ala
1 5 10 15
Ser Val Thr Val Ser Cys Lys Ala Ser Gly Tyr Thr Phe Thr Asp Tyr
20 25 30
Glu Met His Trp Ile Arg Gln Pro Pro Gly Glu Gly Leu Glu Trp Ile
35 40 45
Gly Ala Ile Asp Gly Glu Thr Pro Asp Thr Ala Tyr Ser Gln Lys Phe
50 55 60
Glu Gly Arg Val Thr Leu Thr Ala Asp Lys Ser Thr Ser Thr Ala Tyr
65 70 75 80
Met Glu Leu Ser Ser Leu Thr Glu Glu Asp Thr Ala Val Tyr Tyr Cys
85 90 95
Thr Arg Phe Tyr Ser Tyr Thr Tyr Trp Gly Gln Gly Thr Leu Val Thr
100 105 110
Val Ser Ser
115
<210> 202
<211> 115
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 202
Gln Val Gln Leu Val Gln Ser Gly Ala Glu Val Lys Lys Pro Gly Ala
1 5 10 15
Ser Val Thr Val Ser Cys Lys Ala Ser Gly Tyr Thr Phe Glu Asp Tyr
20 25 30
Glu Met His Trp Ile Arg Gln Pro Pro Gly Glu Gly Leu Glu Trp Ile
35 40 45
Gly Ala Ile Asp Gly Glu Thr Pro Asp Thr Ala Tyr Ser Gln Lys Phe
50 55 60
Glu Gly Arg Val Thr Leu Thr Ala Asp Lys Ser Thr Ser Thr Ala Tyr
65 70 75 80
Met Glu Leu Ser Ser Leu Thr Glu Glu Asp Thr Ala Val Tyr Tyr Cys
85 90 95
Thr Arg Phe Tyr Ser Tyr Thr Tyr Trp Gly Gln Gly Thr Leu Val Thr
100 105 110
Val Ser Ser
115
<210> 203
<211> 115
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 203
Gln Val Gln Leu Val Gln Ser Gly Ala Glu Val Lys Lys Pro Gly Ala
1 5 10 15
Ser Val Lys Val Ser Cys Lys Ala Ser Gly Tyr Thr Phe Thr Asp Tyr
20 25 30
Glu Met His Trp Val Arg Gln Ala Pro Gly Gln Gly Leu Glu Trp Ile
35 40 45
Gly Ala Ile Asp Gly Lys Thr Pro Asp Thr Ala Tyr Ser Gln Lys Phe
50 55 60
Lys Gly Arg Val Thr Leu Thr Ala Asp Lys Ser Thr Ser Thr Ala Tyr
65 70 75 80
Met Glu Leu Ser Ser Leu Thr Ser Glu Asp Thr Ala Val Tyr Tyr Cys
85 90 95
Thr Arg Phe Tyr Ser Tyr Thr Tyr Trp Gly Gln Gly Thr Leu Val Thr
100 105 110
Val Ser Ser
115
<210> 204
<211> 115
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 204
Gln Val Gln Leu Val Gln Ser Gly Ala Glu Val Lys Lys Pro Gly Ala
1 5 10 15
Ser Val Lys Val Ser Cys Lys Ala Ser Gly Tyr Thr Phe Thr Asp Tyr
20 25 30
Glu Met His Trp Ile Arg Gln Pro Pro Gly Gln Gly Leu Glu Trp Met
35 40 45
Gly Ala Ile Asp Gly Lys Thr Pro Asp Thr Ala Tyr Ser Gln Lys Phe
50 55 60
Lys Gly Arg Val Thr Leu Thr Ala Asp Lys Ser Thr Ser Thr Ala Tyr
65 70 75 80
Met Glu Leu Ser Ser Leu Thr Ser Glu Asp Thr Ala Val Tyr Tyr Cys
85 90 95
Thr Arg Phe Tyr Ser Tyr Thr Tyr Trp Gly Gln Gly Thr Leu Val Thr
100 105 110
Val Ser Ser
115
<210> 205
<211> 115
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 205
Gln Val Gln Leu Val Gln Ser Gly Ala Glu Val Lys Lys Pro Gly Ala
1 5 10 15
Ser Val Lys Val Ser Cys Lys Ala Ser Gly Tyr Thr Phe Thr Asp Tyr
20 25 30
Glu Met His Trp Ile Arg Gln Pro Pro Gly Gln Gly Leu Glu Trp Ile
35 40 45
Gly Ala Ile Asp Gly Lys Thr Pro Asp Thr Ala Tyr Ser Gln Lys Phe
50 55 60
Lys Gly Arg Val Thr Leu Thr Ala Asp Lys Ser Thr Ser Thr Ala Tyr
65 70 75 80
Met Glu Leu Ser Ser Leu Arg Ser Glu Asp Thr Ala Val Tyr Tyr Cys
85 90 95
Thr Arg Phe Tyr Ser Tyr Thr Tyr Trp Gly Gln Gly Thr Leu Val Thr
100 105 110
Val Ser Ser
115
<210> 206
<211> 115
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 206
Gln Val Gln Leu Val Gln Ser Gly Ala Glu Val Lys Lys Pro Gly Ala
1 5 10 15
Ser Val Thr Val Ser Cys Lys Ala Ser Gly Tyr Thr Phe Thr Asp Tyr
20 25 30
Glu Met His Trp Ile Arg Gln Pro Pro Gly Glu Gly Leu Glu Trp Ile
35 40 45
Gly Ala Ile Asp Gly Pro Thr Pro Asp Thr Ala Tyr Ser Glu Lys Phe
50 55 60
Lys Gly Arg Val Thr Leu Thr Ala Asp Lys Ser Thr Ser Thr Ala Tyr
65 70 75 80
Met Glu Leu Ser Ser Leu Thr Ser Glu Asp Thr Ala Val Tyr Tyr Cys
85 90 95
Thr Arg Phe Tyr Ser Tyr Thr Tyr Trp Gly Gln Gly Thr Leu Val Thr
100 105 110
Val Ser Ser
115
<210> 207
<211> 115
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 207
Gln Val Gln Leu Val Gln Ser Gly Ala Glu Val Lys Lys Pro Gly Ala
1 5 10 15
Ser Val Thr Val Ser Cys Lys Ala Ser Gly Tyr Thr Phe Thr Asp Tyr
20 25 30
Glu Met His Trp Ile Arg Gln Pro Pro Gly Glu Gly Leu Glu Trp Ile
35 40 45
Gly Ala Ile Asp Gly Trp Thr Pro Asp Thr Ala Tyr Ser Glu Lys Phe
50 55 60
Lys Gly Arg Val Thr Leu Thr Ala Asp Lys Ser Thr Ser Thr Ala Tyr
65 70 75 80
Met Glu Leu Ser Ser Leu Thr Ser Glu Asp Thr Ala Val Tyr Tyr Cys
85 90 95
Thr Arg Phe Tyr Ser Tyr Thr Tyr Trp Gly Gln Gly Thr Leu Val Thr
100 105 110
Val Ser Ser
115
<210> 208
<211> 115
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 208
Gln Val Gln Leu Val Gln Ser Gly Ala Glu Val Lys Lys Pro Gly Ala
1 5 10 15
Ser Val Thr Val Ser Cys Lys Ala Ser Gly Tyr Thr Phe Thr Asp Tyr
20 25 30
Glu Met His Trp Ile Arg Gln Pro Pro Gly Glu Gly Leu Glu Trp Ile
35 40 45
Gly Ala Ile Asp Gly Tyr Thr Pro Asp Thr Ala Tyr Ser Glu Lys Phe
50 55 60
Lys Gly Arg Val Thr Leu Thr Ala Asp Lys Ser Thr Ser Thr Ala Tyr
65 70 75 80
Met Glu Leu Ser Ser Leu Thr Ser Glu Asp Thr Ala Val Tyr Tyr Cys
85 90 95
Thr Arg Phe Tyr Ser Tyr Thr Tyr Trp Gly Gln Gly Thr Leu Val Thr
100 105 110
Val Ser Ser
115
<210> 209
<211> 115
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 209
Gln Val Gln Leu Val Gln Ser Gly Ala Glu Val Lys Lys Pro Gly Ala
1 5 10 15
Ser Val Thr Val Ser Cys Lys Ala Ser Gly Tyr Thr Phe Thr Asp Tyr
20 25 30
Glu Met His Trp Ile Arg Gln Pro Pro Gly Glu Gly Leu Glu Trp Ile
35 40 45
Gly Ala Ile Asp Gly Lys Thr Pro Asp Thr Ala Tyr Ser Glu Lys Phe
50 55 60
Lys Gly Arg Val Thr Leu Thr Ala Asp Lys Ser Thr Ser Thr Ala Tyr
65 70 75 80
Met Glu Leu Ser Ser Leu Thr Ser Glu Asp Thr Ala Val Tyr Tyr Cys
85 90 95
Thr Arg Phe Tyr Ser Tyr Thr Tyr Trp Gly Gln Gly Thr Leu Val Thr
100 105 110
Val Ser Ser
115
<210> 210
<211> 115
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 210
Gln Val Gln Leu Val Gln Ser Gly Ala Glu Val Lys Lys Pro Gly Ala
1 5 10 15
Ser Val Thr Val Ser Cys Lys Ala Ser Gly Tyr Thr Phe Thr Asp Tyr
20 25 30
Glu Met His Trp Ile Arg Gln Pro Pro Gly Glu Gly Leu Glu Trp Ile
35 40 45
Gly Ala Ile Asp Gly Pro Thr Pro Asp Thr Ala Tyr Ser Gln Lys Phe
50 55 60
Glu Gly Arg Val Thr Leu Thr Ala Asp Lys Ser Thr Ser Thr Ala Tyr
65 70 75 80
Met Glu Leu Ser Ser Leu Thr Ser Glu Asp Thr Ala Val Tyr Tyr Cys
85 90 95
Thr Arg Phe Tyr Ser Tyr Thr Tyr Trp Gly Gln Gly Thr Leu Val Thr
100 105 110
Val Ser Ser
115
<210> 211
<211> 115
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 211
Gln Val Gln Leu Val Gln Ser Gly Ala Glu Val Lys Lys Pro Gly Ala
1 5 10 15
Ser Val Thr Val Ser Cys Lys Ala Ser Gly Tyr Thr Phe Thr Asp Tyr
20 25 30
Glu Met His Trp Val Arg Gln Ala Pro Gly Glu Gly Leu Glu Trp Met
35 40 45
Gly Ala Ile Asp Gly Glu Thr Pro Asp Thr Ala Tyr Ser Glu Lys Phe
50 55 60
Lys Gly Arg Val Thr Leu Thr Ala Asp Lys Ser Thr Ser Thr Ala Tyr
65 70 75 80
Met Glu Leu Ser Ser Leu Thr Ser Glu Asp Thr Ala Val Tyr Tyr Cys
85 90 95
Thr Arg Phe Tyr Ser Tyr Thr Tyr Trp Gly Gln Gly Thr Leu Val Thr
100 105 110
Val Ser Ser
115
<210> 212
<211> 115
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 212
Gln Val Gln Leu Val Gln Ser Gly Ala Glu Val Lys Lys Pro Gly Ala
1 5 10 15
Ser Val Thr Val Ser Cys Lys Ala Ser Gly Tyr Thr Phe Thr Asp Tyr
20 25 30
Glu Met His Trp Val Arg Gln Ala Pro Gly Glu Gly Leu Glu Trp Met
35 40 45
Gly Ala Ile Asp Gly Pro Thr Pro Asp Thr Ala Tyr Ser Glu Lys Phe
50 55 60
Lys Gly Arg Val Thr Leu Thr Ala Asp Lys Ser Thr Ser Thr Ala Tyr
65 70 75 80
Met Glu Leu Ser Ser Leu Thr Ser Glu Asp Thr Ala Val Tyr Tyr Cys
85 90 95
Thr Arg Phe Tyr Ser Tyr Thr Tyr Trp Gly Gln Gly Thr Leu Val Thr
100 105 110
Val Ser Ser
115
<210> 213
<211> 115
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 213
Gln Val Gln Leu Val Gln Ser Gly Ala Glu Val Lys Lys Pro Gly Ala
1 5 10 15
Ser Val Thr Val Ser Cys Lys Ala Ser Gly Tyr Thr Phe Thr Asp Tyr
20 25 30
Glu Met His Trp Val Arg Gln Ala Pro Gly Glu Gly Leu Glu Trp Met
35 40 45
Gly Ala Ile Asp Gly Trp Thr Pro Asp Thr Ala Tyr Ser Glu Lys Phe
50 55 60
Lys Gly Arg Val Thr Leu Thr Ala Asp Lys Ser Thr Ser Thr Ala Tyr
65 70 75 80
Met Glu Leu Ser Ser Leu Thr Ser Glu Asp Thr Ala Val Tyr Tyr Cys
85 90 95
Thr Arg Phe Tyr Ser Tyr Thr Tyr Trp Gly Gln Gly Thr Leu Val Thr
100 105 110
Val Ser Ser
115
<210> 214
<211> 115
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 214
Gln Val Gln Leu Val Gln Ser Gly Ala Glu Val Lys Lys Pro Gly Ala
1 5 10 15
Ser Val Thr Val Ser Cys Lys Ala Ser Gly Tyr Thr Phe Thr Asp Tyr
20 25 30
Glu Met His Trp Val Arg Gln Ala Pro Gly Glu Gly Leu Glu Trp Met
35 40 45
Gly Ala Ile Asp Gly Tyr Thr Pro Asp Thr Ala Tyr Ser Glu Lys Phe
50 55 60
Lys Gly Arg Val Thr Leu Thr Ala Asp Lys Ser Thr Ser Thr Ala Tyr
65 70 75 80
Met Glu Leu Ser Ser Leu Thr Ser Glu Asp Thr Ala Val Tyr Tyr Cys
85 90 95
Thr Arg Phe Tyr Ser Tyr Thr Tyr Trp Gly Gln Gly Thr Leu Val Thr
100 105 110
Val Ser Ser
115
<210> 215
<211> 115
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 215
Gln Val Gln Leu Val Gln Ser Gly Ala Glu Val Lys Lys Pro Gly Ala
1 5 10 15
Ser Val Lys Val Ser Cys Lys Ala Ser Gly Tyr Thr Phe Thr Asp Tyr
20 25 30
Glu Met His Trp Ile Arg Gln Pro Pro Gly Gln Gly Leu Glu Trp Ile
35 40 45
Gly Ala Ile Asp Gly Lys Thr Pro Asp Thr Ala Tyr Ser Gln Lys Phe
50 55 60
Lys Gly Arg Val Thr Leu Thr Ala Asp Lys Ser Thr Ser Thr Ala Tyr
65 70 75 80
Met Glu Leu Ser Ser Leu Thr Ser Glu Asp Thr Ala Val Tyr Tyr Cys
85 90 95
Thr Arg Phe Tyr Ser Tyr Thr Tyr Trp Gly Gln Gly Thr Leu Val Thr
100 105 110
Val Ser Ser
115
<210> 216
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 216
Asp Ile Gln Met Thr Gln Ser Pro Ser Ser Leu Ser Ala Ser Val Gly
1 5 10 15
Asp Arg Val Thr Ile Thr Cys Arg Ser Ser Gln Ser Leu Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Lys Ala
35 40 45
Pro Lys Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Ser Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Phe Thr Ile
65 70 75 80
Ser Ser Leu Gln Pro Glu Asp Ile Ala Thr Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Val Glu Ile Lys
100 105 110
<210> 217
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 217
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ala Ser Gln Ser Leu Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 218
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 218
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ile Ser Gln Ser Leu Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 219
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 219
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Pro Ser Gln Ser Leu Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 220
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 220
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Thr Ser Gln Ser Leu Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 221
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 221
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Val Ser Gln Ser Leu Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 222
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 222
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Pro Gln Ser Leu Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 223
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 223
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Pro Leu Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 224
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 224
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Phe Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 225
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 225
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Ile Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 226
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 226
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Met Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 227
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 227
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Pro Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 228
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 228
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Val Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 229
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 229
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Leu Val Arg Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 230
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 230
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Leu Val His Phe
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 231
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 231
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Leu Val His His
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 232
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 232
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Leu Val His Leu
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 233
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 233
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Leu Val His Met
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 234
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 234
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Leu Val His Asn
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 235
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 235
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Leu Val His Pro
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 236
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 236
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Leu Val His Gln
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 237
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 237
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Leu Val His Val
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 238
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 238
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Leu Val His Trp
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 239
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 239
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Leu Val His Ser
20 25 30
Asn Arg Asp Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 240
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 240
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Leu Val His Ser
20 25 30
Asn Arg Glu Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 241
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 241
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Leu Val His Ser
20 25 30
Asn Arg Phe Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 242
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 242
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Leu Val His Ser
20 25 30
Asn Arg Gly Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 243
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 243
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Leu Val His Ser
20 25 30
Asn Arg His Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 244
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 244
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Leu Val His Ser
20 25 30
Asn Arg Met Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 245
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 245
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Leu Val His Ser
20 25 30
Asn Arg Trp Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 246
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 246
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Leu Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Ile His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 247
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 247
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Leu Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Val His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 248
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 248
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Leu Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu Glu Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 249
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 249
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Leu Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu Leu Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 250
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 250
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Leu Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu Met Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 251
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 251
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Leu Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu Asn Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 252
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 252
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Leu Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu Gln Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 253
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 253
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Leu Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Phe Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 254
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 254
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Leu Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser His Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 255
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 255
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Leu Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Ile Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 256
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 256
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Leu Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Met Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 257
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 257
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Leu Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Thr Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 258
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 258
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Leu Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Trp Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 259
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 259
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Leu Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Ala Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 260
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 260
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Leu Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Gly Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 261
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 261
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Leu Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Ile Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 262
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 262
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Leu Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Lys Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 263
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 263
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Leu Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Leu Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 264
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 264
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Leu Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Met Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 265
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 265
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Leu Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Asn Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 266
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 266
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Leu Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Pro Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 267
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 267
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Leu Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Arg Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 268
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 268
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Leu Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Val Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 269
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 269
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Leu Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Tyr Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 270
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 270
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Leu Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Phe Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 271
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 271
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Leu Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Gly Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 272
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 272
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Leu Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe His Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 273
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 273
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Leu Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ile Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 274
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 274
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Leu Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Leu Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 275
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 275
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Leu Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Met Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 276
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 276
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Leu Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Pro Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 277
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 277
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Leu Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Gln Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 278
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 278
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Leu Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Arg Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 279
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 279
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Leu Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Val Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 280
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 280
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Leu Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Trp Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 281
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 281
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Leu Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Ala Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 282
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 282
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Leu Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Glu Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 283
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 283
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Leu Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Phe Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 284
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 284
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Leu Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Ile Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 285
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 285
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Leu Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Leu Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 286
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 286
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Leu Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Asn Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 287
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 287
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Leu Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Thr Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 288
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 288
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Leu Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Val Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 289
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 289
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Leu Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Tyr Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 290
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 290
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Leu Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Ser
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 291
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 291
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Leu Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Thr
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 292
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 292
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Leu Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Phe Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 293
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 293
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Leu Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln His Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 294
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 294
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Leu Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Asn Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 295
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 295
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Leu Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Pro Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 296
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 296
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Leu Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Trp Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 297
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 297
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Leu Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Tyr Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 298
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 298
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Pro Ser Gln Ser Pro Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 299
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 299
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Pro Pro Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 300
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 300
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Pro Val His Ser
20 25 30
Asn Arg Trp Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 301
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 301
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Pro Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Ile His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 302
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 302
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Pro Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Arg Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 303
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 303
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Pro Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Trp Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 304
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 304
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Pro Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Tyr Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 305
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 305
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Pro Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Arg Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Tyr Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 306
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 306
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Pro Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Trp Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Tyr Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 307
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 307
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Pro Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Ile His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Tyr Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 308
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 308
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Pro Val His Ser
20 25 30
Asn Arg Trp Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Tyr Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 309
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 309
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Pro Pro Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Tyr Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 310
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 310
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Pro Ser Gln Ser Pro Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Tyr Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 311
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 311
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Pro Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Ile His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Arg Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 312
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 312
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Pro Pro Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Arg Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 313
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 313
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Pro Pro Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Ile His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 314
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 314
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Pro Leu Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Arg Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 315
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 315
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Pro Ser Gln Ser Leu Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Arg Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 316
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 316
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Leu Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Arg Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Tyr Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 317
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 317
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Leu Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Ile His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Arg Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 318
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 318
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Pro Leu Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Arg Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Tyr Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 319
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 319
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Pro Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Ile Gln Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Tyr Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 320
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 320
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Pro Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Ile His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Leu Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Tyr Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 321
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 321
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Pro Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Ile His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Pro Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Tyr Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 322
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 322
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Pro Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Ile His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Ile Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 323
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 323
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Pro Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Ile His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Leu Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 324
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 324
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Pro Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Ile His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Val Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 325
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 325
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Pro Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Ile His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Tyr Gln Ser
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 326
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 326
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Pro Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Ile His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Tyr Gln Thr
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 327
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 327
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Pro Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Ile His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Tyr Gln Gly
85 90 95
Thr Gln Trp Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 328
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 328
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Glu Ser Leu Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 329
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 329
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Glu Leu Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 330
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 330
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Glu Pro Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Arg Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 331
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 331
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Glu Pro Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Tyr Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 332
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 332
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Glu Pro Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Trp Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Tyr Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 333
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 333
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Glu Pro Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Ile His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Tyr Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 334
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 334
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Glu Pro Pro Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Tyr Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 335
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 335
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Glu Ser Pro Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Arg Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 336
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 336
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Glu Ser Pro Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Tyr Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 337
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 337
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Glu Ser Pro Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Trp Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Tyr Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 338
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 338
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Glu Ser Pro Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Ile His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Tyr Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 339
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 339
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Glu Pro Pro Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Arg Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 340
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 340
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Pro Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Ile Gln Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Ser Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 341
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 341
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Pro Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Ile Gln Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Ile Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 342
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 342
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Pro Ser Gln Ser Pro Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Ile Gln Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Tyr Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 343
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 343
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Pro Ser Gln Ser Pro Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Ile Gln Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Ser Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 344
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 344
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Pro Ser Gln Ser Pro Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Ile Gln Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Ile Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 345
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 345
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Pro Pro Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Thr Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 346
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 346
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Pro Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Ile His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Thr Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 347
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 347
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Pro Ser Gln Ser Pro Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Thr Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 348
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 348
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Pro Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Ile Gln Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Thr Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 349
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 349
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Pro Pro Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Ala Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 350
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 350
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Pro Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Ile His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Ala Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 351
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 351
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Pro Ser Gln Ser Pro Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Ala Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 352
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 352
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Pro Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Ile Gln Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Ala Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 353
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 353
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Pro Pro Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Val Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 354
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 354
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Pro Ser Gln Ser Pro Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Val Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 355
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 355
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Pro Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Ile Gln Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Val Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 356
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 356
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Pro Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Ile Gln Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 357
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 357
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Leu Val His Ser
20 25 30
Asn Arg Gln Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 358
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 358
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Pro Pro Val His Ser
20 25 30
Asn Arg Gln Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 359
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 359
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Pro Leu Val His Ser
20 25 30
Asn Arg Gln Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 360
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 360
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Gln Ala Ser Glu Ser Leu Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 361
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 361
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Leu Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Leu Gln Lys Pro Gly Gln Ser
35 40 45
Pro Gln Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 362
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 362
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Leu Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Val Glu Ile Glu
100 105 110
<210> 363
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 363
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Gln Ala Ser Glu Ser Leu Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Val Glu Ile Glu
100 105 110
<210> 364
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 364
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Leu Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Leu Gln Lys Pro Gly Gln Ser
35 40 45
Pro Gln Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Val Glu Ile Glu
100 105 110
<210> 365
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 365
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Gln Ala Ser Glu Ser Leu Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Leu Gln Lys Pro Gly Gln Ser
35 40 45
Pro Gln Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Val Glu Ile Glu
100 105 110
<210> 366
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 366
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Gln Ala Ser Glu Ser Leu Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Leu Gln Lys Pro Gly Gln Ser
35 40 45
Pro Gln Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 367
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 367
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Gln Ala Ser Glu Ser Leu Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Arg Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 368
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 368
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Leu Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Leu Gln Lys Pro Gly Gln Ser
35 40 45
Pro Gln Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Arg Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 369
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 369
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Leu Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Arg Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Val Glu Ile Glu
100 105 110
<210> 370
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 370
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Gln Ala Ser Glu Ser Leu Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Arg Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Val Glu Ile Glu
100 105 110
<210> 371
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 371
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Leu Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Leu Gln Lys Pro Gly Gln Ser
35 40 45
Pro Gln Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Arg Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Val Glu Ile Glu
100 105 110
<210> 372
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 372
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Gln Ala Ser Glu Ser Leu Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Leu Gln Lys Pro Gly Gln Ser
35 40 45
Pro Gln Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Arg Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Val Glu Ile Glu
100 105 110
<210> 373
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 373
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Pro Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Leu Gln Lys Pro Gly Gln Ser
35 40 45
Pro Gln Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 374
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 374
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Pro Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Leu Gln Lys Pro Gly Gln Ser
35 40 45
Pro Gln Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Tyr Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 375
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 375
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Pro Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Ile Gln Trp Tyr Leu Gln Lys Pro Gly Gln Ser
35 40 45
Pro Gln Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Tyr Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 376
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 376
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Gln Ala Ser Glu Ser Pro Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Leu Gln Lys Pro Gly Gln Ser
35 40 45
Pro Gln Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 377
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 377
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Gln Ala Ser Glu Ser Pro Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Leu Gln Lys Pro Gly Gln Ser
35 40 45
Pro Gln Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Tyr Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 378
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 378
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Gln Ala Ser Glu Ser Pro Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Ile Gln Trp Tyr Leu Gln Lys Pro Gly Gln Ser
35 40 45
Pro Gln Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Tyr Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 379
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 379
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Pro Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Leu Gln Lys Pro Gly Gln Ser
35 40 45
Pro Gln Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Thr Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 380
<211> 112
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 380
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Gln Ala Ser Glu Ser Pro Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Leu Gln Lys Pro Gly Gln Ser
35 40 45
Pro Gln Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Thr Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 381
<211> 458
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 381
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Val Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Asn Ile Lys Ala Lys Ser Asn Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Asp Asp Ser Lys Asn Ser
65 70 75 80
Leu Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Gly Ala Tyr Tyr Gly Val Asp Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser Ala Ser Thr Lys Gly Pro
115 120 125
Ser Val Phe Pro Leu Ala Pro Ser Ser Lys Ser Thr Ser Gly Gly Thr
130 135 140
Ala Ala Leu Gly Cys Leu Val Lys Asp Tyr Phe Pro Glu Pro Val Thr
145 150 155 160
Val Ser Trp Asn Ser Gly Ala Leu Thr Ser Gly Val His Thr Phe Pro
165 170 175
Ala Val Leu Gln Ser Ser Gly Leu Tyr Ser Leu Ser Ser Val Val Thr
180 185 190
Val Pro Ser Ser Ser Leu Gly Thr Gln Thr Tyr Ile Cys Asn Val Asn
195 200 205
His Lys Pro Ser Asn Thr Lys Val Asp Lys Lys Val Glu Pro Lys Ser
210 215 220
Cys Asp Lys Thr His Thr Cys Pro Pro Cys Pro Ala Pro Glu Ala Ala
225 230 235 240
Gly Gly Pro Ser Val Phe Leu Phe Pro Pro Lys Pro Lys Asp Thr Leu
245 250 255
Met Ile Ser Arg Thr Pro Glu Val Thr Cys Val Val Val Asp Val Ser
260 265 270
His Glu Asp Pro Glu Val Lys Phe Asn Trp Tyr Val Asp Gly Val Glu
275 280 285
Val His Asn Ala Lys Thr Lys Pro Arg Glu Glu Gln Tyr Ala Ser Thr
290 295 300
Tyr Arg Val Val Ser Val Leu Thr Val Leu His Gln Asp Trp Leu Asn
305 310 315 320
Gly Lys Glu Tyr Lys Cys Lys Val Ser Asn Lys Ala Leu Pro Ala Pro
325 330 335
Ile Glu Lys Thr Ile Ser Lys Ala Lys Gly Gln Pro Arg Glu Pro Gln
340 345 350
Val Tyr Thr Leu Pro Pro Ser Arg Cys Glu Leu Thr Lys Asn Gln Val
355 360 365
Ser Leu Ser Cys Ala Val Lys Gly Phe Tyr Pro Ser Asp Ile Ala Val
370 375 380
Glu Trp Glu Ser Asn Gly Gln Pro Glu Asn Asn Tyr Lys Thr Thr Pro
385 390 395 400
Pro Val Leu Asp Ser Asp Gly Ser Phe Phe Leu Val Ser Lys Leu Thr
405 410 415
Val Asp Lys Ser Arg Trp Gln Gln Gly Asn Val Phe Ser Cys Ser Val
420 425 430
Met His Glu Ala Leu His Asn His Tyr Thr Gln Lys Ser Leu Ser Leu
435 440 445
Ser Pro Asp Tyr Lys Asp Asp Asp Asp Lys
450 455
<210> 382
<211> 458
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 382
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Val Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Ala Lys Ser Asn Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Asp Asp Ser Lys Asn Ser
65 70 75 80
Leu Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Tyr Ala Tyr Tyr Gly Val Gln Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser Ala Ser Thr Lys Gly Pro
115 120 125
Ser Val Phe Pro Leu Ala Pro Ser Ser Lys Ser Thr Ser Gly Gly Thr
130 135 140
Ala Ala Leu Gly Cys Leu Val Lys Asp Tyr Phe Pro Glu Pro Val Thr
145 150 155 160
Val Ser Trp Asn Ser Gly Ala Leu Thr Ser Gly Val His Thr Phe Pro
165 170 175
Ala Val Leu Gln Ser Ser Gly Leu Tyr Ser Leu Ser Ser Val Val Thr
180 185 190
Val Pro Ser Ser Ser Leu Gly Thr Gln Thr Tyr Ile Cys Asn Val Asn
195 200 205
His Lys Pro Ser Asn Thr Lys Val Asp Lys Lys Val Glu Pro Lys Ser
210 215 220
Cys Asp Lys Thr His Thr Cys Pro Pro Cys Pro Ala Pro Glu Ala Ala
225 230 235 240
Gly Gly Pro Ser Val Phe Leu Phe Pro Pro Lys Pro Lys Asp Thr Leu
245 250 255
Met Ile Ser Arg Thr Pro Glu Val Thr Cys Val Val Val Asp Val Ser
260 265 270
His Glu Asp Pro Glu Val Lys Phe Asn Trp Tyr Val Asp Gly Val Glu
275 280 285
Val His Asn Ala Lys Thr Lys Pro Arg Glu Glu Gln Tyr Ala Ser Thr
290 295 300
Tyr Arg Val Val Ser Val Leu Thr Val Leu His Gln Asp Trp Leu Asn
305 310 315 320
Gly Lys Glu Tyr Lys Cys Lys Val Ser Asn Lys Ala Leu Pro Ala Pro
325 330 335
Ile Glu Lys Thr Ile Ser Lys Ala Lys Gly Gln Pro Arg Glu Pro Gln
340 345 350
Val Tyr Thr Leu Pro Pro Ser Arg Cys Glu Leu Thr Lys Asn Gln Val
355 360 365
Ser Leu Ser Cys Ala Val Lys Gly Phe Tyr Pro Ser Asp Ile Ala Val
370 375 380
Glu Trp Glu Ser Asn Gly Gln Pro Glu Asn Asn Tyr Lys Thr Thr Pro
385 390 395 400
Pro Val Leu Asp Ser Asp Gly Ser Phe Phe Leu Val Ser Lys Leu Thr
405 410 415
Val Asp Lys Ser Arg Trp Gln Gln Gly Asn Val Phe Ser Cys Ser Val
420 425 430
Met His Glu Ala Leu His Asn His Tyr Thr Gln Lys Ser Leu Ser Leu
435 440 445
Ser Pro Asp Tyr Lys Asp Asp Asp Asp Lys
450 455
<210> 383
<211> 458
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 383
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Val Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Ala Lys Ser Asn Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Asp Asp Ser Lys Asn Ser
65 70 75 80
Leu Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Tyr Tyr Tyr Tyr Gly Val Asp Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser Ala Ser Thr Lys Gly Pro
115 120 125
Ser Val Phe Pro Leu Ala Pro Ser Ser Lys Ser Thr Ser Gly Gly Thr
130 135 140
Ala Ala Leu Gly Cys Leu Val Lys Asp Tyr Phe Pro Glu Pro Val Thr
145 150 155 160
Val Ser Trp Asn Ser Gly Ala Leu Thr Ser Gly Val His Thr Phe Pro
165 170 175
Ala Val Leu Gln Ser Ser Gly Leu Tyr Ser Leu Ser Ser Val Val Thr
180 185 190
Val Pro Ser Ser Ser Leu Gly Thr Gln Thr Tyr Ile Cys Asn Val Asn
195 200 205
His Lys Pro Ser Asn Thr Lys Val Asp Lys Lys Val Glu Pro Lys Ser
210 215 220
Cys Asp Lys Thr His Thr Cys Pro Pro Cys Pro Ala Pro Glu Ala Ala
225 230 235 240
Gly Gly Pro Ser Val Phe Leu Phe Pro Pro Lys Pro Lys Asp Thr Leu
245 250 255
Met Ile Ser Arg Thr Pro Glu Val Thr Cys Val Val Val Asp Val Ser
260 265 270
His Glu Asp Pro Glu Val Lys Phe Asn Trp Tyr Val Asp Gly Val Glu
275 280 285
Val His Asn Ala Lys Thr Lys Pro Arg Glu Glu Gln Tyr Ala Ser Thr
290 295 300
Tyr Arg Val Val Ser Val Leu Thr Val Leu His Gln Asp Trp Leu Asn
305 310 315 320
Gly Lys Glu Tyr Lys Cys Lys Val Ser Asn Lys Ala Leu Pro Ala Pro
325 330 335
Ile Glu Lys Thr Ile Ser Lys Ala Lys Gly Gln Pro Arg Glu Pro Gln
340 345 350
Val Tyr Thr Leu Pro Pro Ser Arg Cys Glu Leu Thr Lys Asn Gln Val
355 360 365
Ser Leu Ser Cys Ala Val Lys Gly Phe Tyr Pro Ser Asp Ile Ala Val
370 375 380
Glu Trp Glu Ser Asn Gly Gln Pro Glu Asn Asn Tyr Lys Thr Thr Pro
385 390 395 400
Pro Val Leu Asp Ser Asp Gly Ser Phe Phe Leu Val Ser Lys Leu Thr
405 410 415
Val Asp Lys Ser Arg Trp Gln Gln Gly Asn Val Phe Ser Cys Ser Val
420 425 430
Met His Glu Ala Leu His Asn His Tyr Thr Gln Lys Ser Leu Ser Leu
435 440 445
Ser Pro Asp Tyr Lys Asp Asp Asp Asp Lys
450 455
<210> 384
<211> 440
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 384
Gln Val Gln Leu Val Gln Ser Gly Ala Glu Val Lys Lys Pro Gly Ala
1 5 10 15
Ser Val Thr Val Ser Cys Lys Ala Ser Gly Tyr Thr Phe Thr Asp Tyr
20 25 30
Glu Met His Trp Ile Arg Gln Pro Pro Gly Glu Gly Leu Glu Trp Ile
35 40 45
Gly Ala Ile Asp Gly Glu Thr Pro Asp Thr Ala Tyr Ser Glu Lys Phe
50 55 60
Lys Gly Arg Val Thr Leu Thr Ala Asp Lys Ser Thr Ser Thr Ala Tyr
65 70 75 80
Met Glu Leu Ser Ser Leu Thr Ser Glu Asp Thr Ala Val Tyr Tyr Cys
85 90 95
Thr Arg Phe Tyr Ser Tyr Thr Tyr Trp Gly Gln Gly Thr Leu Val Thr
100 105 110
Val Ser Ser Ala Ser Thr Lys Gly Pro Ser Val Phe Pro Leu Ala Pro
115 120 125
Cys Ser Arg Ser Thr Ser Glu Ser Thr Ala Ala Leu Gly Cys Leu Val
130 135 140
Lys Asp Tyr Phe Pro Glu Pro Val Thr Val Ser Trp Asn Ser Gly Ala
145 150 155 160
Leu Thr Ser Gly Val His Thr Phe Pro Ala Val Leu Gln Ser Ser Gly
165 170 175
Leu Tyr Ser Leu Ser Ser Val Val Thr Val Pro Ser Ser Ser Leu Gly
180 185 190
Thr Gln Thr Tyr Thr Cys Asn Val Asp His Lys Pro Ser Asn Thr Lys
195 200 205
Val Asp Lys Arg Val Glu Ser Lys Tyr Gly Pro Pro Cys Pro Pro Cys
210 215 220
Pro Ala Pro Glu Phe Arg Gly Gly Pro Lys Val Phe Leu Phe Pro Pro
225 230 235 240
Lys Pro Lys Asp Thr Leu Met Ile Ser Arg Thr Pro Glu Val Thr Cys
245 250 255
Val Val Val Asp Val Ser Gln Glu Asp Pro Glu Val Gln Phe Asn Trp
260 265 270
Tyr Val Asp Gly Val Glu Val His Asn Ala Lys Thr Lys Pro Arg Glu
275 280 285
Glu Gln Phe Ala Ser Thr Tyr Arg Val Val Ser Val Leu Thr Val Leu
290 295 300
His Gln Asp Trp Leu Asn Gly Lys Glu Tyr Lys Cys Lys Val Ser Asn
305 310 315 320
Lys Gly Leu Pro Ser Ser Ile Glu Lys Thr Ile Ser Lys Ala Lys Gly
325 330 335
Gln Pro Arg Glu Pro Gln Val Tyr Thr Leu Pro Pro Ser Gln Glu Glu
340 345 350
Met Thr Lys Asn Gln Val Ser Leu Thr Cys Leu Val Lys Gly Phe Tyr
355 360 365
Pro Ser Asp Ile Ala Val Glu Trp Glu Ser Asn Gly Gln Pro Glu Asn
370 375 380
Asn Tyr Lys Thr Thr Pro Pro Val Leu Asp Ser Asp Gly Ser Phe Phe
385 390 395 400
Leu Tyr Ser Lys Leu Thr Val Asp Lys Ser Arg Trp Gln Glu Gly Asn
405 410 415
Val Phe Ser Cys Ser Val Met His Glu Ala Leu His Asn His Tyr Thr
420 425 430
Gln Glu Ser Leu Ser Leu Ser Pro
435 440
<210> 385
<211> 440
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 385
Gln Val Gln Leu Val Gln Ser Gly Ala Glu Val Lys Lys Pro Gly Ala
1 5 10 15
Ser Val Thr Val Ser Cys Lys Ala Ser Gly Tyr Thr Phe Thr Asp Tyr
20 25 30
Glu Met His Trp Ile Arg Gln Pro Pro Gly Glu Gly Leu Glu Trp Ile
35 40 45
Gly Ala Ile Asp Gly Pro Thr Pro Asp Thr Ala Tyr Ser Glu Lys Phe
50 55 60
Lys Gly Arg Val Thr Leu Thr Ala Asp Lys Ser Thr Ser Thr Ala Tyr
65 70 75 80
Met Glu Leu Ser Ser Leu Thr Ser Glu Asp Thr Ala Val Tyr Tyr Cys
85 90 95
Thr Arg Phe Tyr Ser Tyr Thr Tyr Trp Gly Gln Gly Thr Leu Val Thr
100 105 110
Val Ser Ser Ala Ser Thr Lys Gly Pro Ser Val Phe Pro Leu Ala Pro
115 120 125
Cys Ser Arg Ser Thr Ser Glu Ser Thr Ala Ala Leu Gly Cys Leu Val
130 135 140
Lys Asp Tyr Phe Pro Glu Pro Val Thr Val Ser Trp Asn Ser Gly Ala
145 150 155 160
Leu Thr Ser Gly Val His Thr Phe Pro Ala Val Leu Gln Ser Ser Gly
165 170 175
Leu Tyr Ser Leu Ser Ser Val Val Thr Val Pro Ser Ser Ser Leu Gly
180 185 190
Thr Gln Thr Tyr Thr Cys Asn Val Asp His Lys Pro Ser Asn Thr Lys
195 200 205
Val Asp Lys Arg Val Glu Ser Lys Tyr Gly Pro Pro Cys Pro Pro Cys
210 215 220
Pro Ala Pro Glu Phe Arg Gly Gly Pro Lys Val Phe Leu Phe Pro Pro
225 230 235 240
Lys Pro Lys Asp Thr Leu Met Ile Ser Arg Thr Pro Glu Val Thr Cys
245 250 255
Val Val Val Asp Val Ser Gln Glu Asp Pro Glu Val Gln Phe Asn Trp
260 265 270
Tyr Val Asp Gly Val Glu Val His Asn Ala Lys Thr Lys Pro Arg Glu
275 280 285
Glu Gln Phe Ala Ser Thr Tyr Arg Val Val Ser Val Leu Thr Val Leu
290 295 300
His Gln Asp Trp Leu Asn Gly Lys Glu Tyr Lys Cys Lys Val Ser Asn
305 310 315 320
Lys Gly Leu Pro Ser Ser Ile Glu Lys Thr Ile Ser Lys Ala Lys Gly
325 330 335
Gln Pro Arg Glu Pro Gln Val Tyr Thr Leu Pro Pro Ser Gln Glu Glu
340 345 350
Met Thr Lys Asn Gln Val Ser Leu Thr Cys Leu Val Lys Gly Phe Tyr
355 360 365
Pro Ser Asp Ile Ala Val Glu Trp Glu Ser Asn Gly Gln Pro Glu Asn
370 375 380
Asn Tyr Lys Thr Thr Pro Pro Val Leu Asp Ser Asp Gly Ser Phe Phe
385 390 395 400
Leu Tyr Ser Lys Leu Thr Val Asp Lys Ser Arg Trp Gln Glu Gly Asn
405 410 415
Val Phe Ser Cys Ser Val Met His Glu Ala Leu His Asn His Tyr Thr
420 425 430
Gln Glu Ser Leu Ser Leu Ser Pro
435 440
<210> 386
<211> 440
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 386
Gln Val Gln Leu Val Gln Ser Gly Ala Glu Val Lys Lys Pro Gly Ala
1 5 10 15
Ser Val Thr Val Ser Cys Lys Ala Ser Gly Tyr Thr Phe Thr Asp Tyr
20 25 30
Glu Met His Trp Val Arg Gln Ala Pro Gly Glu Gly Leu Glu Trp Met
35 40 45
Gly Ala Ile Asp Gly Glu Thr Pro Asp Thr Ala Tyr Ser Glu Lys Phe
50 55 60
Lys Gly Arg Val Thr Leu Thr Ala Asp Lys Ser Thr Ser Thr Ala Tyr
65 70 75 80
Met Glu Leu Ser Ser Leu Thr Ser Glu Asp Thr Ala Val Tyr Tyr Cys
85 90 95
Thr Arg Phe Tyr Ser Tyr Thr Tyr Trp Gly Gln Gly Thr Leu Val Thr
100 105 110
Val Ser Ser Ala Ser Thr Lys Gly Pro Ser Val Phe Pro Leu Ala Pro
115 120 125
Cys Ser Arg Ser Thr Ser Glu Ser Thr Ala Ala Leu Gly Cys Leu Val
130 135 140
Lys Asp Tyr Phe Pro Glu Pro Val Thr Val Ser Trp Asn Ser Gly Ala
145 150 155 160
Leu Thr Ser Gly Val His Thr Phe Pro Ala Val Leu Gln Ser Ser Gly
165 170 175
Leu Tyr Ser Leu Ser Ser Val Val Thr Val Pro Ser Ser Ser Leu Gly
180 185 190
Thr Gln Thr Tyr Thr Cys Asn Val Asp His Lys Pro Ser Asn Thr Lys
195 200 205
Val Asp Lys Arg Val Glu Ser Lys Tyr Gly Pro Pro Cys Pro Pro Cys
210 215 220
Pro Ala Pro Glu Phe Arg Gly Gly Pro Lys Val Phe Leu Phe Pro Pro
225 230 235 240
Lys Pro Lys Asp Thr Leu Met Ile Ser Arg Thr Pro Glu Val Thr Cys
245 250 255
Val Val Val Asp Val Ser Gln Glu Asp Pro Glu Val Gln Phe Asn Trp
260 265 270
Tyr Val Asp Gly Val Glu Val His Asn Ala Lys Thr Lys Pro Arg Glu
275 280 285
Glu Gln Phe Ala Ser Thr Tyr Arg Val Val Ser Val Leu Thr Val Leu
290 295 300
His Gln Asp Trp Leu Asn Gly Lys Glu Tyr Lys Cys Lys Val Ser Asn
305 310 315 320
Lys Gly Leu Pro Ser Ser Ile Glu Lys Thr Ile Ser Lys Ala Lys Gly
325 330 335
Gln Pro Arg Glu Pro Gln Val Tyr Thr Leu Pro Pro Ser Gln Glu Glu
340 345 350
Met Thr Lys Asn Gln Val Ser Leu Thr Cys Leu Val Lys Gly Phe Tyr
355 360 365
Pro Ser Asp Ile Ala Val Glu Trp Glu Ser Asn Gly Gln Pro Glu Asn
370 375 380
Asn Tyr Lys Thr Thr Pro Pro Val Leu Asp Ser Asp Gly Ser Phe Phe
385 390 395 400
Leu Tyr Ser Lys Leu Thr Val Asp Lys Ser Arg Trp Gln Glu Gly Asn
405 410 415
Val Phe Ser Cys Ser Val Met His Glu Ala Leu His Asn His Tyr Thr
420 425 430
Gln Glu Ser Leu Ser Leu Ser Pro
435 440
<210> 387
<211> 440
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 387
Gln Val Gln Leu Val Gln Ser Gly Ala Glu Val Lys Lys Pro Gly Ala
1 5 10 15
Ser Val Lys Val Ser Cys Lys Ala Ser Gly Tyr Thr Phe Thr Asp Tyr
20 25 30
Glu Met His Trp Ile Arg Gln Pro Pro Gly Gln Gly Leu Glu Trp Ile
35 40 45
Gly Ala Ile Asp Gly Lys Thr Pro Asp Thr Ala Tyr Ser Gln Lys Phe
50 55 60
Lys Gly Arg Val Thr Leu Thr Ala Asp Lys Ser Thr Ser Thr Ala Tyr
65 70 75 80
Met Glu Leu Ser Ser Leu Thr Ser Glu Asp Thr Ala Val Tyr Tyr Cys
85 90 95
Thr Arg Phe Tyr Ser Tyr Thr Tyr Trp Gly Gln Gly Thr Leu Val Thr
100 105 110
Val Ser Ser Ala Ser Thr Lys Gly Pro Ser Val Phe Pro Leu Ala Pro
115 120 125
Cys Ser Arg Ser Thr Ser Glu Ser Thr Ala Ala Leu Gly Cys Leu Val
130 135 140
Lys Asp Tyr Phe Pro Glu Pro Val Thr Val Ser Trp Asn Ser Gly Ala
145 150 155 160
Leu Thr Ser Gly Val His Thr Phe Pro Ala Val Leu Gln Ser Ser Gly
165 170 175
Leu Tyr Ser Leu Ser Ser Val Val Thr Val Pro Ser Ser Ser Leu Gly
180 185 190
Thr Gln Thr Tyr Thr Cys Asn Val Asp His Lys Pro Ser Asn Thr Lys
195 200 205
Val Asp Lys Arg Val Glu Ser Lys Tyr Gly Pro Pro Cys Pro Pro Cys
210 215 220
Pro Ala Pro Glu Phe Arg Gly Gly Pro Lys Val Phe Leu Phe Pro Pro
225 230 235 240
Lys Pro Lys Asp Thr Leu Met Ile Ser Arg Thr Pro Glu Val Thr Cys
245 250 255
Val Val Val Asp Val Ser Gln Glu Asp Pro Glu Val Gln Phe Asn Trp
260 265 270
Tyr Val Asp Gly Val Glu Val His Asn Ala Lys Thr Lys Pro Arg Glu
275 280 285
Glu Gln Phe Ala Ser Thr Tyr Arg Val Val Ser Val Leu Thr Val Leu
290 295 300
His Gln Asp Trp Leu Asn Gly Lys Glu Tyr Lys Cys Lys Val Ser Asn
305 310 315 320
Lys Gly Leu Pro Ser Ser Ile Glu Lys Thr Ile Ser Lys Ala Lys Gly
325 330 335
Gln Pro Arg Glu Pro Gln Val Tyr Thr Leu Pro Pro Ser Gln Glu Glu
340 345 350
Met Thr Lys Asn Gln Val Ser Leu Thr Cys Leu Val Lys Gly Phe Tyr
355 360 365
Pro Ser Asp Ile Ala Val Glu Trp Glu Ser Asn Gly Gln Pro Glu Asn
370 375 380
Asn Tyr Lys Thr Thr Pro Pro Val Leu Asp Ser Asp Gly Ser Phe Phe
385 390 395 400
Leu Tyr Ser Lys Leu Thr Val Asp Lys Ser Arg Trp Gln Glu Gly Asn
405 410 415
Val Phe Ser Cys Ser Val Met His Glu Ala Leu His Asn His Tyr Thr
420 425 430
Gln Glu Ser Leu Ser Leu Ser Pro
435 440
<210> 388
<211> 458
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 388
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Val Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Ala Lys Ser Asn Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Asp Asp Ser Lys Asn Ser
65 70 75 80
Leu Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Gly Ala Tyr Tyr Gly Val Asp Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser Ala Ser Thr Lys Gly Pro
115 120 125
Ser Val Phe Pro Leu Ala Pro Ser Ser Lys Ser Thr Ser Gly Gly Thr
130 135 140
Ala Ala Leu Gly Cys Leu Val Lys Asp Tyr Phe Pro Glu Pro Val Thr
145 150 155 160
Val Ser Trp Asn Ser Gly Ala Leu Thr Ser Gly Val His Thr Phe Pro
165 170 175
Ala Val Leu Gln Ser Ser Gly Leu Tyr Ser Leu Ser Ser Val Val Thr
180 185 190
Val Pro Ser Ser Ser Leu Gly Thr Gln Thr Tyr Ile Cys Asn Val Asn
195 200 205
His Lys Pro Ser Asn Thr Lys Val Asp Lys Lys Val Glu Pro Lys Ser
210 215 220
Cys Asp Lys Thr His Thr Cys Pro Pro Cys Pro Ala Pro Glu Ala Ala
225 230 235 240
Gly Gly Pro Ser Val Phe Leu Phe Pro Pro Lys Pro Lys Asp Thr Leu
245 250 255
Met Ile Ser Arg Thr Pro Glu Val Thr Cys Val Val Val Asp Val Ser
260 265 270
His Glu Asp Pro Glu Val Lys Phe Asn Trp Tyr Val Asp Gly Val Glu
275 280 285
Val His Asn Ala Lys Thr Lys Pro Arg Glu Glu Gln Tyr Ala Ser Thr
290 295 300
Tyr Arg Val Val Ser Val Leu Thr Val Leu His Gln Asp Trp Leu Asn
305 310 315 320
Gly Lys Glu Tyr Lys Cys Lys Val Ser Asn Lys Ala Leu Pro Ala Pro
325 330 335
Ile Glu Lys Thr Ile Ser Lys Ala Lys Gly Gln Pro Arg Glu Pro Gln
340 345 350
Val Tyr Thr Leu Pro Pro Ser Arg Cys Glu Leu Thr Lys Asn Gln Val
355 360 365
Ser Leu Ser Cys Ala Val Lys Gly Phe Tyr Pro Ser Asp Ile Ala Val
370 375 380
Glu Trp Glu Ser Asn Gly Gln Pro Glu Asn Asn Tyr Lys Thr Thr Pro
385 390 395 400
Pro Val Leu Asp Ser Asp Gly Ser Phe Phe Leu Val Ser Lys Leu Thr
405 410 415
Val Asp Lys Ser Arg Trp Gln Gln Gly Asn Val Phe Ser Cys Ser Val
420 425 430
Met His Glu Ala Leu His Asn His Tyr Thr Gln Lys Ser Leu Ser Leu
435 440 445
Ser Pro Asp Tyr Lys Asp Asp Asp Asp Lys
450 455
<210> 389
<211> 458
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 389
Glu Val Gln Leu Val Glu Thr Gly Gly Ser Leu Val Gln Pro Gly Lys
1 5 10 15
Ser Leu Lys Leu Thr Cys Ala Thr Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ser Pro Glu Lys Gln Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Ala Lys Ser Asn Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Asp Asp Ser Lys Ser Asn
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Glu Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Gly Ala Tyr Tyr Gly Val Asp Ala Trp
100 105 110
Gly Gln Gly Thr Ser Val Thr Val Ser Ser Ala Ser Thr Lys Gly Pro
115 120 125
Ser Val Phe Pro Leu Ala Pro Ser Ser Lys Ser Thr Ser Gly Gly Thr
130 135 140
Ala Ala Leu Gly Cys Leu Val Lys Asp Tyr Phe Pro Glu Pro Val Thr
145 150 155 160
Val Ser Trp Asn Ser Gly Ala Leu Thr Ser Gly Val His Thr Phe Pro
165 170 175
Ala Val Leu Gln Ser Ser Gly Leu Tyr Ser Leu Ser Ser Val Val Thr
180 185 190
Val Pro Ser Ser Ser Leu Gly Thr Gln Thr Tyr Ile Cys Asn Val Asn
195 200 205
His Lys Pro Ser Asn Thr Lys Val Asp Lys Lys Val Glu Pro Lys Ser
210 215 220
Cys Asp Lys Thr His Thr Cys Pro Pro Cys Pro Ala Pro Glu Ala Ala
225 230 235 240
Gly Gly Pro Ser Val Phe Leu Phe Pro Pro Lys Pro Lys Asp Thr Leu
245 250 255
Met Ile Ser Arg Thr Pro Glu Val Thr Cys Val Val Val Asp Val Ser
260 265 270
His Glu Asp Pro Glu Val Lys Phe Asn Trp Tyr Val Asp Gly Val Glu
275 280 285
Val His Asn Ala Lys Thr Lys Pro Arg Glu Glu Gln Tyr Ala Ser Thr
290 295 300
Tyr Arg Val Val Ser Val Leu Thr Val Leu His Gln Asp Trp Leu Asn
305 310 315 320
Gly Lys Glu Tyr Lys Cys Lys Val Ser Asn Lys Ala Leu Pro Ala Pro
325 330 335
Ile Glu Lys Thr Ile Ser Lys Ala Lys Gly Gln Pro Arg Glu Pro Gln
340 345 350
Val Tyr Thr Leu Pro Pro Ser Arg Cys Glu Leu Thr Lys Asn Gln Val
355 360 365
Ser Leu Ser Cys Ala Val Lys Gly Phe Tyr Pro Ser Asp Ile Ala Val
370 375 380
Glu Trp Glu Ser Asn Gly Gln Pro Glu Asn Asn Tyr Lys Thr Thr Pro
385 390 395 400
Pro Val Leu Asp Ser Asp Gly Ser Phe Phe Leu Val Ser Lys Leu Thr
405 410 415
Val Asp Lys Ser Arg Trp Gln Gln Gly Asn Val Phe Ser Cys Ser Val
420 425 430
Met His Glu Ala Leu His Asn His Tyr Thr Gln Lys Ser Leu Ser Leu
435 440 445
Ser Pro Asp Tyr Lys Asp Asp Asp Asp Lys
450 455
<210> 390
<211> 447
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 390
Glu Val Gln Leu Val Glu Thr Gly Gly Ser Leu Val Gln Pro Gly Lys
1 5 10 15
Ser Leu Lys Leu Thr Cys Ala Thr Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ser Pro Glu Lys Gln Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Ala Lys Ser Asn Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Asp Asp Ser Lys Ser Asn
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Glu Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Gly Ala Tyr Tyr Gly Val Asp Ala Trp
100 105 110
Gly Gln Gly Thr Ser Val Thr Val Ser Ser Ala Ser Thr Lys Gly Pro
115 120 125
Ser Val Phe Pro Leu Ala Pro Cys Ser Arg Ser Thr Ser Glu Ser Thr
130 135 140
Ala Ala Leu Gly Cys Leu Val Lys Asp Tyr Phe Pro Glu Pro Val Thr
145 150 155 160
Val Ser Trp Asn Ser Gly Ala Leu Thr Ser Gly Val His Thr Phe Pro
165 170 175
Ala Val Leu Gln Ser Ser Gly Leu Tyr Ser Leu Ser Ser Val Val Thr
180 185 190
Val Pro Ser Ser Ser Leu Gly Thr Lys Thr Tyr Thr Cys Asn Val Asp
195 200 205
His Lys Pro Ser Asn Thr Lys Val Asp Lys Arg Val Glu Ser Lys Tyr
210 215 220
Gly Pro Pro Cys Pro Pro Cys Pro Ala Pro Glu Phe Arg Gly Gly Pro
225 230 235 240
Lys Val Phe Leu Phe Pro Pro Lys Pro Lys Asp Thr Leu Met Ile Ser
245 250 255
Arg Thr Pro Glu Val Thr Cys Val Val Val Asp Val Ser Gln Glu Asp
260 265 270
Pro Glu Val Gln Phe Asn Trp Tyr Val Asp Gly Val Glu Val His Asn
275 280 285
Ala Lys Thr Lys Pro Arg Glu Glu Gln Phe Ala Ser Thr Tyr Arg Val
290 295 300
Val Ser Val Leu Thr Val Leu His Gln Asp Trp Leu Asn Gly Lys Glu
305 310 315 320
Tyr Lys Cys Lys Val Ser Asn Lys Gly Leu Pro Ser Ser Ile Glu Lys
325 330 335
Thr Ile Ser Lys Ala Lys Gly Gln Pro Arg Glu Pro Gln Val Tyr Thr
340 345 350
Leu Pro Pro Ser Gln Lys Glu Met Thr Lys Asn Gln Val Ser Leu Thr
355 360 365
Cys Leu Val Lys Gly Phe Tyr Pro Ser Asp Ile Ala Val Glu Trp Glu
370 375 380
Ser Asn Gly Gln Pro Glu Asn Asn Tyr Lys Thr Thr Pro Pro Val Leu
385 390 395 400
Asp Ser Asp Gly Ser Phe Phe Leu Tyr Ser Lys Leu Thr Val Asp Lys
405 410 415
Ser Arg Trp Gln Glu Gly Asn Val Phe Ser Cys Ser Val Met His Glu
420 425 430
Ala Leu His Asn Arg Tyr Thr Gln Lys Ser Leu Ser Leu Ser Pro
435 440 445
<210> 391
<211> 458
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 391
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Val Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Ala Lys Ser Asn Asn Tyr Lys Lys Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Asp Asp Ser Lys Asn Ser
65 70 75 80
Leu Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Tyr Tyr Tyr Tyr Gly Val Gln Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser Ala Ser Thr Lys Gly Pro
115 120 125
Ser Val Phe Pro Leu Ala Pro Ser Ser Lys Ser Thr Ser Gly Gly Thr
130 135 140
Ala Ala Leu Gly Cys Leu Val Lys Asp Tyr Phe Pro Glu Pro Val Thr
145 150 155 160
Val Ser Trp Asn Ser Gly Ala Leu Thr Ser Gly Val His Thr Phe Pro
165 170 175
Ala Val Leu Gln Ser Ser Gly Leu Tyr Ser Leu Ser Ser Val Val Thr
180 185 190
Val Pro Ser Ser Ser Leu Gly Thr Gln Thr Tyr Ile Cys Asn Val Asn
195 200 205
His Lys Pro Ser Asn Thr Lys Val Asp Lys Lys Val Glu Pro Lys Ser
210 215 220
Cys Asp Lys Thr His Thr Cys Pro Pro Cys Pro Ala Pro Glu Ala Ala
225 230 235 240
Gly Gly Pro Ser Val Phe Leu Phe Pro Pro Lys Pro Lys Asp Thr Leu
245 250 255
Met Ile Ser Arg Thr Pro Glu Val Thr Cys Val Val Val Asp Val Ser
260 265 270
His Glu Asp Pro Glu Val Lys Phe Asn Trp Tyr Val Asp Gly Val Glu
275 280 285
Val His Asn Ala Lys Thr Lys Pro Arg Glu Glu Gln Tyr Ala Ser Thr
290 295 300
Tyr Arg Val Val Ser Val Leu Thr Val Leu His Gln Asp Trp Leu Asn
305 310 315 320
Gly Lys Glu Tyr Lys Cys Lys Val Ser Asn Lys Ala Leu Pro Ala Pro
325 330 335
Ile Glu Lys Thr Ile Ser Lys Ala Lys Gly Gln Pro Arg Glu Pro Gln
340 345 350
Val Tyr Thr Leu Pro Pro Ser Arg Cys Glu Leu Thr Lys Asn Gln Val
355 360 365
Ser Leu Ser Cys Ala Val Lys Gly Phe Tyr Pro Ser Asp Ile Ala Val
370 375 380
Glu Trp Glu Ser Asn Gly Gln Pro Glu Asn Asn Tyr Lys Thr Thr Pro
385 390 395 400
Pro Val Leu Asp Ser Asp Gly Ser Phe Phe Leu Val Ser Lys Leu Thr
405 410 415
Val Asp Lys Ser Arg Trp Gln Gln Gly Asn Val Phe Ser Cys Ser Val
420 425 430
Met His Glu Ala Leu His Asn His Tyr Thr Gln Lys Ser Leu Ser Leu
435 440 445
Ser Pro Asp Tyr Lys Asp Asp Asp Asp Lys
450 455
<210> 392
<211> 458
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 392
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Gly Lys Ser Asn Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ser Ala Ser Tyr Gly Val Asp Ile Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser Ala Ser Thr Lys Gly Pro
115 120 125
Ser Val Phe Pro Leu Ala Pro Ser Ser Lys Ser Thr Ser Gly Gly Thr
130 135 140
Ala Ala Leu Gly Cys Leu Val Lys Asp Tyr Phe Pro Glu Pro Val Thr
145 150 155 160
Val Ser Trp Asn Ser Gly Ala Leu Thr Ser Gly Val His Thr Phe Pro
165 170 175
Ala Val Leu Gln Ser Ser Gly Leu Tyr Ser Leu Ser Ser Val Val Thr
180 185 190
Val Pro Ser Ser Ser Leu Gly Thr Gln Thr Tyr Ile Cys Asn Val Asn
195 200 205
His Lys Pro Ser Asn Thr Lys Val Asp Lys Lys Val Glu Pro Lys Ser
210 215 220
Cys Asp Lys Thr His Thr Cys Pro Pro Cys Pro Ala Pro Glu Ala Ala
225 230 235 240
Gly Gly Pro Ser Val Phe Leu Phe Pro Pro Lys Pro Lys Asp Thr Leu
245 250 255
Met Ile Ser Arg Thr Pro Glu Val Thr Cys Val Val Val Asp Val Ser
260 265 270
His Glu Asp Pro Glu Val Lys Phe Asn Trp Tyr Val Asp Gly Val Glu
275 280 285
Val His Asn Ala Lys Thr Lys Pro Arg Glu Glu Gln Tyr Ala Ser Thr
290 295 300
Tyr Arg Val Val Ser Val Leu Thr Val Leu His Gln Asp Trp Leu Asn
305 310 315 320
Gly Lys Glu Tyr Lys Cys Lys Val Ser Asn Lys Ala Leu Pro Ala Pro
325 330 335
Ile Glu Lys Thr Ile Ser Lys Ala Lys Gly Gln Pro Arg Glu Pro Gln
340 345 350
Val Tyr Thr Leu Pro Pro Ser Arg Cys Glu Leu Thr Lys Asn Gln Val
355 360 365
Ser Leu Ser Cys Ala Val Lys Gly Phe Tyr Pro Ser Asp Ile Ala Val
370 375 380
Glu Trp Glu Ser Asn Gly Gln Pro Glu Asn Asn Tyr Lys Thr Thr Pro
385 390 395 400
Pro Val Leu Asp Ser Asp Gly Ser Phe Phe Leu Val Ser Lys Leu Thr
405 410 415
Val Asp Lys Ser Arg Trp Gln Gln Gly Asn Val Phe Ser Cys Ser Val
420 425 430
Met His Glu Ala Leu His Asn His Tyr Thr Gln Lys Ser Leu Ser Leu
435 440 445
Ser Pro Asp Tyr Lys Asp Asp Asp Asp Lys
450 455
<210> 393
<211> 447
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 393
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ser Ala Ser Tyr Gly Val Asp Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser Ala Ser Thr Lys Gly Pro
115 120 125
Ser Val Phe Pro Leu Ala Pro Cys Ser Arg Ser Thr Ser Glu Ser Thr
130 135 140
Ala Ala Leu Gly Cys Leu Val Lys Asp Tyr Phe Pro Glu Pro Val Thr
145 150 155 160
Val Ser Trp Asn Ser Gly Ala Leu Thr Ser Gly Val His Thr Phe Pro
165 170 175
Ala Val Leu Gln Ser Ser Gly Leu Tyr Ser Leu Ser Ser Val Val Thr
180 185 190
Val Pro Ser Ser Ser Leu Gly Thr Lys Thr Tyr Thr Cys Asn Val Asp
195 200 205
His Lys Pro Ser Asn Thr Lys Val Asp Lys Arg Val Glu Ser Lys Tyr
210 215 220
Gly Pro Pro Cys Pro Pro Cys Pro Ala Pro Glu Phe Arg Gly Gly Pro
225 230 235 240
Lys Val Phe Leu Phe Pro Pro Lys Pro Lys Asp Thr Leu Met Ile Ser
245 250 255
Arg Thr Pro Glu Val Thr Cys Val Val Val Asp Val Ser Gln Glu Asp
260 265 270
Pro Glu Val Gln Phe Asn Trp Tyr Val Asp Gly Val Glu Val His Asn
275 280 285
Ala Lys Thr Lys Pro Arg Glu Glu Gln Phe Ala Ser Thr Tyr Arg Val
290 295 300
Val Ser Val Leu Thr Val Leu His Gln Asp Trp Leu Asn Gly Lys Glu
305 310 315 320
Tyr Lys Cys Lys Val Ser Asn Lys Gly Leu Pro Ser Ser Ile Glu Lys
325 330 335
Thr Ile Ser Lys Ala Lys Gly Gln Pro Arg Glu Pro Gln Val Tyr Thr
340 345 350
Leu Pro Pro Ser Gln Lys Glu Met Thr Lys Asn Gln Val Ser Leu Thr
355 360 365
Cys Leu Val Lys Gly Phe Tyr Pro Ser Asp Ile Ala Val Glu Trp Glu
370 375 380
Ser Asn Gly Gln Pro Glu Asn Asn Tyr Lys Thr Thr Pro Pro Val Leu
385 390 395 400
Asp Ser Asp Gly Ser Phe Phe Leu Tyr Ser Lys Leu Thr Val Asp Lys
405 410 415
Ser Arg Trp Gln Glu Gly Asn Val Phe Ser Cys Ser Val Met His Glu
420 425 430
Ala Leu His Asn Arg Tyr Thr Gln Lys Ser Leu Ser Leu Ser Pro
435 440 445
<210> 394
<211> 447
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 394
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ala Ala Ser Tyr Gly Val Asp Ile Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser Ala Ser Thr Lys Gly Pro
115 120 125
Ser Val Phe Pro Leu Ala Pro Cys Ser Arg Ser Thr Ser Glu Ser Thr
130 135 140
Ala Ala Leu Gly Cys Leu Val Lys Asp Tyr Phe Pro Glu Pro Val Thr
145 150 155 160
Val Ser Trp Asn Ser Gly Ala Leu Thr Ser Gly Val His Thr Phe Pro
165 170 175
Ala Val Leu Gln Ser Ser Gly Leu Tyr Ser Leu Ser Ser Val Val Thr
180 185 190
Val Pro Ser Ser Ser Leu Gly Thr Lys Thr Tyr Thr Cys Asn Val Asp
195 200 205
His Lys Pro Ser Asn Thr Lys Val Asp Lys Arg Val Glu Ser Lys Tyr
210 215 220
Gly Pro Pro Cys Pro Pro Cys Pro Ala Pro Glu Phe Arg Gly Gly Pro
225 230 235 240
Lys Val Phe Leu Phe Pro Pro Lys Pro Lys Asp Thr Leu Met Ile Ser
245 250 255
Arg Thr Pro Glu Val Thr Cys Val Val Val Asp Val Ser Gln Glu Asp
260 265 270
Pro Glu Val Gln Phe Asn Trp Tyr Val Asp Gly Val Glu Val His Asn
275 280 285
Ala Lys Thr Lys Pro Arg Glu Glu Gln Phe Ala Ser Thr Tyr Arg Val
290 295 300
Val Ser Val Leu Thr Val Leu His Gln Asp Trp Leu Asn Gly Lys Glu
305 310 315 320
Tyr Lys Cys Lys Val Ser Asn Lys Gly Leu Pro Ser Ser Ile Glu Lys
325 330 335
Thr Ile Ser Lys Ala Lys Gly Gln Pro Arg Glu Pro Gln Val Tyr Thr
340 345 350
Leu Pro Pro Ser Gln Lys Glu Met Thr Lys Asn Gln Val Ser Leu Thr
355 360 365
Cys Leu Val Lys Gly Phe Tyr Pro Ser Asp Ile Ala Val Glu Trp Glu
370 375 380
Ser Asn Gly Gln Pro Glu Asn Asn Tyr Lys Thr Thr Pro Pro Val Leu
385 390 395 400
Asp Ser Asp Gly Ser Phe Phe Leu Tyr Ser Lys Leu Thr Val Asp Lys
405 410 415
Ser Arg Trp Gln Glu Gly Asn Val Phe Ser Cys Ser Val Met His Glu
420 425 430
Ala Leu His Asn Arg Tyr Thr Gln Lys Ser Leu Ser Leu Ser Pro
435 440 445
<210> 395
<211> 447
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 395
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Asp Asp Ser Lys Asn Ser
65 70 75 80
Leu Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ala Ala Ser Tyr Gly Val Asp Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser Ala Ser Thr Lys Gly Pro
115 120 125
Ser Val Phe Pro Leu Ala Pro Cys Ser Arg Ser Thr Ser Glu Ser Thr
130 135 140
Ala Ala Leu Gly Cys Leu Val Lys Asp Tyr Phe Pro Glu Pro Val Thr
145 150 155 160
Val Ser Trp Asn Ser Gly Ala Leu Thr Ser Gly Val His Thr Phe Pro
165 170 175
Ala Val Leu Gln Ser Ser Gly Leu Tyr Ser Leu Ser Ser Val Val Thr
180 185 190
Val Pro Ser Ser Ser Leu Gly Thr Lys Thr Tyr Thr Cys Asn Val Asp
195 200 205
His Lys Pro Ser Asn Thr Lys Val Asp Lys Arg Val Glu Ser Lys Tyr
210 215 220
Gly Pro Pro Cys Pro Pro Cys Pro Ala Pro Glu Phe Arg Gly Gly Pro
225 230 235 240
Lys Val Phe Leu Phe Pro Pro Lys Pro Lys Asp Thr Leu Met Ile Ser
245 250 255
Arg Thr Pro Glu Val Thr Cys Val Val Val Asp Val Ser Gln Glu Asp
260 265 270
Pro Glu Val Gln Phe Asn Trp Tyr Val Asp Gly Val Glu Val His Asn
275 280 285
Ala Lys Thr Lys Pro Arg Glu Glu Gln Phe Ala Ser Thr Tyr Arg Val
290 295 300
Val Ser Val Leu Thr Val Leu His Gln Asp Trp Leu Asn Gly Lys Glu
305 310 315 320
Tyr Lys Cys Lys Val Ser Asn Lys Gly Leu Pro Ser Ser Ile Glu Lys
325 330 335
Thr Ile Ser Lys Ala Lys Gly Gln Pro Arg Glu Pro Gln Val Tyr Thr
340 345 350
Leu Pro Pro Ser Gln Lys Glu Met Thr Lys Asn Gln Val Ser Leu Thr
355 360 365
Cys Leu Val Lys Gly Phe Tyr Pro Ser Asp Ile Ala Val Glu Trp Glu
370 375 380
Ser Asn Gly Gln Pro Glu Asn Asn Tyr Lys Thr Thr Pro Pro Val Leu
385 390 395 400
Asp Ser Asp Gly Ser Phe Phe Leu Tyr Ser Lys Leu Thr Val Asp Lys
405 410 415
Ser Arg Trp Gln Glu Gly Asn Val Phe Ser Cys Ser Val Met His Glu
420 425 430
Ala Leu His Asn Arg Tyr Thr Gln Lys Ser Leu Ser Leu Ser Pro
435 440 445
<210> 396
<211> 447
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 396
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Val Val Gln Pro Gly Gly
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Asp Asp Ser Lys Asn Ser
65 70 75 80
Leu Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ala Ala Ser Tyr Gly Val Asp Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser Ala Ser Thr Lys Gly Pro
115 120 125
Ser Val Phe Pro Leu Ala Pro Cys Ser Arg Ser Thr Ser Glu Ser Thr
130 135 140
Ala Ala Leu Gly Cys Leu Val Lys Asp Tyr Phe Pro Glu Pro Val Thr
145 150 155 160
Val Ser Trp Asn Ser Gly Ala Leu Thr Ser Gly Val His Thr Phe Pro
165 170 175
Ala Val Leu Gln Ser Ser Gly Leu Tyr Ser Leu Ser Ser Val Val Thr
180 185 190
Val Pro Ser Ser Ser Leu Gly Thr Lys Thr Tyr Thr Cys Asn Val Asp
195 200 205
His Lys Pro Ser Asn Thr Lys Val Asp Lys Arg Val Glu Ser Lys Tyr
210 215 220
Gly Pro Pro Cys Pro Pro Cys Pro Ala Pro Glu Phe Arg Gly Gly Pro
225 230 235 240
Lys Val Phe Leu Phe Pro Pro Lys Pro Lys Asp Thr Leu Met Ile Ser
245 250 255
Arg Thr Pro Glu Val Thr Cys Val Val Val Asp Val Ser Gln Glu Asp
260 265 270
Pro Glu Val Gln Phe Asn Trp Tyr Val Asp Gly Val Glu Val His Asn
275 280 285
Ala Lys Thr Lys Pro Arg Glu Glu Gln Phe Ala Ser Thr Tyr Arg Val
290 295 300
Val Ser Val Leu Thr Val Leu His Gln Asp Trp Leu Asn Gly Lys Glu
305 310 315 320
Tyr Lys Cys Lys Val Ser Asn Lys Gly Leu Pro Ser Ser Ile Glu Lys
325 330 335
Thr Ile Ser Lys Ala Lys Gly Gln Pro Arg Glu Pro Gln Val Tyr Thr
340 345 350
Leu Pro Pro Ser Gln Lys Glu Met Thr Lys Asn Gln Val Ser Leu Thr
355 360 365
Cys Leu Val Lys Gly Phe Tyr Pro Ser Asp Ile Ala Val Glu Trp Glu
370 375 380
Ser Asn Gly Gln Pro Glu Asn Asn Tyr Lys Thr Thr Pro Pro Val Leu
385 390 395 400
Asp Ser Asp Gly Ser Phe Phe Leu Tyr Ser Lys Leu Thr Val Asp Lys
405 410 415
Ser Arg Trp Gln Glu Gly Asn Val Phe Ser Cys Ser Val Met His Glu
420 425 430
Ala Leu His Asn Arg Tyr Thr Gln Lys Ser Leu Ser Leu Ser Pro
435 440 445
<210> 397
<211> 447
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 397
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Asn Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ala Ala Ser Tyr Gly Val Asp Ile Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser Ala Ser Thr Lys Gly Pro
115 120 125
Ser Val Phe Pro Leu Ala Pro Cys Ser Arg Ser Thr Ser Glu Ser Thr
130 135 140
Ala Ala Leu Gly Cys Leu Val Lys Asp Tyr Phe Pro Glu Pro Val Thr
145 150 155 160
Val Ser Trp Asn Ser Gly Ala Leu Thr Ser Gly Val His Thr Phe Pro
165 170 175
Ala Val Leu Gln Ser Ser Gly Leu Tyr Ser Leu Ser Ser Val Val Thr
180 185 190
Val Pro Ser Ser Ser Leu Gly Thr Lys Thr Tyr Thr Cys Asn Val Asp
195 200 205
His Lys Pro Ser Asn Thr Lys Val Asp Lys Arg Val Glu Ser Lys Tyr
210 215 220
Gly Pro Pro Cys Pro Pro Cys Pro Ala Pro Glu Phe Arg Gly Gly Pro
225 230 235 240
Lys Val Phe Leu Phe Pro Pro Lys Pro Lys Asp Thr Leu Met Ile Ser
245 250 255
Arg Thr Pro Glu Val Thr Cys Val Val Val Asp Val Ser Gln Glu Asp
260 265 270
Pro Glu Val Gln Phe Asn Trp Tyr Val Asp Gly Val Glu Val His Asn
275 280 285
Ala Lys Thr Lys Pro Arg Glu Glu Gln Phe Ala Ser Thr Tyr Arg Val
290 295 300
Val Ser Val Leu Thr Val Leu His Gln Asp Trp Leu Asn Gly Lys Glu
305 310 315 320
Tyr Lys Cys Lys Val Ser Asn Lys Gly Leu Pro Ser Ser Ile Glu Lys
325 330 335
Thr Ile Ser Lys Ala Lys Gly Gln Pro Arg Glu Pro Gln Val Tyr Thr
340 345 350
Leu Pro Pro Ser Gln Lys Glu Met Thr Lys Asn Gln Val Ser Leu Thr
355 360 365
Cys Leu Val Lys Gly Phe Tyr Pro Ser Asp Ile Ala Val Glu Trp Glu
370 375 380
Ser Asn Gly Gln Pro Glu Asn Asn Tyr Lys Thr Thr Pro Pro Val Leu
385 390 395 400
Asp Ser Asp Gly Ser Phe Phe Leu Tyr Ser Lys Leu Thr Val Asp Lys
405 410 415
Ser Arg Trp Gln Glu Gly Asn Val Phe Ser Cys Ser Val Met His Glu
420 425 430
Ala Leu His Asn Arg Tyr Thr Gln Lys Ser Leu Ser Leu Ser Pro
435 440 445
<210> 398
<211> 447
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 398
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Asp Asp Ser Lys Asn Ser
65 70 75 80
Leu Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ala Ala Gly Tyr Gly Val Asp Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser Ala Ser Thr Lys Gly Pro
115 120 125
Ser Val Phe Pro Leu Ala Pro Cys Ser Arg Ser Thr Ser Glu Ser Thr
130 135 140
Ala Ala Leu Gly Cys Leu Val Lys Asp Tyr Phe Pro Glu Pro Val Thr
145 150 155 160
Val Ser Trp Asn Ser Gly Ala Leu Thr Ser Gly Val His Thr Phe Pro
165 170 175
Ala Val Leu Gln Ser Ser Gly Leu Tyr Ser Leu Ser Ser Val Val Thr
180 185 190
Val Pro Ser Ser Ser Leu Gly Thr Lys Thr Tyr Thr Cys Asn Val Asp
195 200 205
His Lys Pro Ser Asn Thr Lys Val Asp Lys Arg Val Glu Ser Lys Tyr
210 215 220
Gly Pro Pro Cys Pro Pro Cys Pro Ala Pro Glu Phe Arg Gly Gly Pro
225 230 235 240
Lys Val Phe Leu Phe Pro Pro Lys Pro Lys Asp Thr Leu Met Ile Ser
245 250 255
Arg Thr Pro Glu Val Thr Cys Val Val Val Asp Val Ser Gln Glu Asp
260 265 270
Pro Glu Val Gln Phe Asn Trp Tyr Val Asp Gly Val Glu Val His Asn
275 280 285
Ala Lys Thr Lys Pro Arg Glu Glu Gln Phe Ala Ser Thr Tyr Arg Val
290 295 300
Val Ser Val Leu Thr Val Leu His Gln Asp Trp Leu Asn Gly Lys Glu
305 310 315 320
Tyr Lys Cys Lys Val Ser Asn Lys Gly Leu Pro Ser Ser Ile Glu Lys
325 330 335
Thr Ile Ser Lys Ala Lys Gly Gln Pro Arg Glu Pro Gln Val Tyr Thr
340 345 350
Leu Pro Pro Ser Gln Lys Glu Met Thr Lys Asn Gln Val Ser Leu Thr
355 360 365
Cys Leu Val Lys Gly Phe Tyr Pro Ser Asp Ile Ala Val Glu Trp Glu
370 375 380
Ser Asn Gly Gln Pro Glu Asn Asn Tyr Lys Thr Thr Pro Pro Val Leu
385 390 395 400
Asp Ser Asp Gly Ser Phe Phe Leu Tyr Ser Lys Leu Thr Val Asp Lys
405 410 415
Ser Arg Trp Gln Glu Gly Asn Val Phe Ser Cys Ser Val Met His Glu
420 425 430
Ala Leu His Asn Arg Tyr Thr Gln Lys Ser Leu Ser Leu Ser Pro
435 440 445
<210> 399
<211> 447
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 399
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Val Val Gln Pro Gly Gly
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ala Ala Gly Tyr Gly Val Asp Ile Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser Ala Ser Thr Lys Gly Pro
115 120 125
Ser Val Phe Pro Leu Ala Pro Cys Ser Arg Ser Thr Ser Glu Ser Thr
130 135 140
Ala Ala Leu Gly Cys Leu Val Lys Asp Tyr Phe Pro Glu Pro Val Thr
145 150 155 160
Val Ser Trp Asn Ser Gly Ala Leu Thr Ser Gly Val His Thr Phe Pro
165 170 175
Ala Val Leu Gln Ser Ser Gly Leu Tyr Ser Leu Ser Ser Val Val Thr
180 185 190
Val Pro Ser Ser Ser Leu Gly Thr Lys Thr Tyr Thr Cys Asn Val Asp
195 200 205
His Lys Pro Ser Asn Thr Lys Val Asp Lys Arg Val Glu Ser Lys Tyr
210 215 220
Gly Pro Pro Cys Pro Pro Cys Pro Ala Pro Glu Phe Arg Gly Gly Pro
225 230 235 240
Lys Val Phe Leu Phe Pro Pro Lys Pro Lys Asp Thr Leu Met Ile Ser
245 250 255
Arg Thr Pro Glu Val Thr Cys Val Val Val Asp Val Ser Gln Glu Asp
260 265 270
Pro Glu Val Gln Phe Asn Trp Tyr Val Asp Gly Val Glu Val His Asn
275 280 285
Ala Lys Thr Lys Pro Arg Glu Glu Gln Phe Ala Ser Thr Tyr Arg Val
290 295 300
Val Ser Val Leu Thr Val Leu His Gln Asp Trp Leu Asn Gly Lys Glu
305 310 315 320
Tyr Lys Cys Lys Val Ser Asn Lys Gly Leu Pro Ser Ser Ile Glu Lys
325 330 335
Thr Ile Ser Lys Ala Lys Gly Gln Pro Arg Glu Pro Gln Val Tyr Thr
340 345 350
Leu Pro Pro Ser Gln Lys Glu Met Thr Lys Asn Gln Val Ser Leu Thr
355 360 365
Cys Leu Val Lys Gly Phe Tyr Pro Ser Asp Ile Ala Val Glu Trp Glu
370 375 380
Ser Asn Gly Gln Pro Glu Asn Asn Tyr Lys Thr Thr Pro Pro Val Leu
385 390 395 400
Asp Ser Asp Gly Ser Phe Phe Leu Tyr Ser Lys Leu Thr Val Asp Lys
405 410 415
Ser Arg Trp Gln Glu Gly Asn Val Phe Ser Cys Ser Val Met His Glu
420 425 430
Ala Leu His Asn Arg Tyr Thr Gln Lys Ser Leu Ser Leu Ser Pro
435 440 445
<210> 400
<211> 447
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 400
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Thr Tyr Val Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Asp Asp Ser Lys Asn Ser
65 70 75 80
Leu Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ala Ala Gly Tyr Gly Val Asp Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser Ala Ser Thr Lys Gly Pro
115 120 125
Ser Val Phe Pro Leu Ala Pro Cys Ser Arg Ser Thr Ser Glu Ser Thr
130 135 140
Ala Ala Leu Gly Cys Leu Val Lys Asp Tyr Phe Pro Glu Pro Val Thr
145 150 155 160
Val Ser Trp Asn Ser Gly Ala Leu Thr Ser Gly Val His Thr Phe Pro
165 170 175
Ala Val Leu Gln Ser Ser Gly Leu Tyr Ser Leu Ser Ser Val Val Thr
180 185 190
Val Pro Ser Ser Ser Leu Gly Thr Lys Thr Tyr Thr Cys Asn Val Asp
195 200 205
His Lys Pro Ser Asn Thr Lys Val Asp Lys Arg Val Glu Ser Lys Tyr
210 215 220
Gly Pro Pro Cys Pro Pro Cys Pro Ala Pro Glu Phe Arg Gly Gly Pro
225 230 235 240
Lys Val Phe Leu Phe Pro Pro Lys Pro Lys Asp Thr Leu Met Ile Ser
245 250 255
Arg Thr Pro Glu Val Thr Cys Val Val Val Asp Val Ser Gln Glu Asp
260 265 270
Pro Glu Val Gln Phe Asn Trp Tyr Val Asp Gly Val Glu Val His Asn
275 280 285
Ala Lys Thr Lys Pro Arg Glu Glu Gln Phe Ala Ser Thr Tyr Arg Val
290 295 300
Val Ser Val Leu Thr Val Leu His Gln Asp Trp Leu Asn Gly Lys Glu
305 310 315 320
Tyr Lys Cys Lys Val Ser Asn Lys Gly Leu Pro Ser Ser Ile Glu Lys
325 330 335
Thr Ile Ser Lys Ala Lys Gly Gln Pro Arg Glu Pro Gln Val Tyr Thr
340 345 350
Leu Pro Pro Ser Gln Lys Glu Met Thr Lys Asn Gln Val Ser Leu Thr
355 360 365
Cys Leu Val Lys Gly Phe Tyr Pro Ser Asp Ile Ala Val Glu Trp Glu
370 375 380
Ser Asn Gly Gln Pro Glu Asn Asn Tyr Lys Thr Thr Pro Pro Val Leu
385 390 395 400
Asp Ser Asp Gly Ser Phe Phe Leu Tyr Ser Lys Leu Thr Val Asp Lys
405 410 415
Ser Arg Trp Gln Glu Gly Asn Val Phe Ser Cys Ser Val Met His Glu
420 425 430
Ala Leu His Asn Arg Tyr Thr Gln Lys Ser Leu Ser Leu Ser Pro
435 440 445
<210> 401
<211> 447
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 401
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Val Val Gln Pro Gly Gly
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Thr Tyr Val Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ala Ala Gly Tyr Gly Val Asp Ile Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser Ala Ser Thr Lys Gly Pro
115 120 125
Ser Val Phe Pro Leu Ala Pro Cys Ser Arg Ser Thr Ser Glu Ser Thr
130 135 140
Ala Ala Leu Gly Cys Leu Val Lys Asp Tyr Phe Pro Glu Pro Val Thr
145 150 155 160
Val Ser Trp Asn Ser Gly Ala Leu Thr Ser Gly Val His Thr Phe Pro
165 170 175
Ala Val Leu Gln Ser Ser Gly Leu Tyr Ser Leu Ser Ser Val Val Thr
180 185 190
Val Pro Ser Ser Ser Leu Gly Thr Lys Thr Tyr Thr Cys Asn Val Asp
195 200 205
His Lys Pro Ser Asn Thr Lys Val Asp Lys Arg Val Glu Ser Lys Tyr
210 215 220
Gly Pro Pro Cys Pro Pro Cys Pro Ala Pro Glu Phe Arg Gly Gly Pro
225 230 235 240
Lys Val Phe Leu Phe Pro Pro Lys Pro Lys Asp Thr Leu Met Ile Ser
245 250 255
Arg Thr Pro Glu Val Thr Cys Val Val Val Asp Val Ser Gln Glu Asp
260 265 270
Pro Glu Val Gln Phe Asn Trp Tyr Val Asp Gly Val Glu Val His Asn
275 280 285
Ala Lys Thr Lys Pro Arg Glu Glu Gln Phe Ala Ser Thr Tyr Arg Val
290 295 300
Val Ser Val Leu Thr Val Leu His Gln Asp Trp Leu Asn Gly Lys Glu
305 310 315 320
Tyr Lys Cys Lys Val Ser Asn Lys Gly Leu Pro Ser Ser Ile Glu Lys
325 330 335
Thr Ile Ser Lys Ala Lys Gly Gln Pro Arg Glu Pro Gln Val Tyr Thr
340 345 350
Leu Pro Pro Ser Gln Lys Glu Met Thr Lys Asn Gln Val Ser Leu Thr
355 360 365
Cys Leu Val Lys Gly Phe Tyr Pro Ser Asp Ile Ala Val Glu Trp Glu
370 375 380
Ser Asn Gly Gln Pro Glu Asn Asn Tyr Lys Thr Thr Pro Pro Val Leu
385 390 395 400
Asp Ser Asp Gly Ser Phe Phe Leu Tyr Ser Lys Leu Thr Val Asp Lys
405 410 415
Ser Arg Trp Gln Glu Gly Asn Val Phe Ser Cys Ser Val Met His Glu
420 425 430
Ala Leu His Asn Arg Tyr Thr Gln Lys Ser Leu Ser Leu Ser Pro
435 440 445
<210> 402
<211> 447
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 402
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Val Val Gln Pro Gly Gly
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Thr Tyr Val Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ala Ala Gly Tyr Gly Val Asp Ile Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser Ala Ser Thr Lys Gly Pro
115 120 125
Ser Val Phe Pro Leu Ala Pro Cys Ser Arg Ser Thr Ser Glu Ser Thr
130 135 140
Ala Ala Leu Gly Cys Leu Val Lys Asp Tyr Phe Pro Glu Pro Val Thr
145 150 155 160
Val Ser Trp Asn Ser Gly Ala Leu Thr Ser Gly Val His Thr Phe Pro
165 170 175
Ala Val Leu Gln Ser Ser Gly Leu Tyr Ser Leu Ser Ser Val Val Thr
180 185 190
Val Pro Ser Ser Ser Leu Gly Thr Lys Thr Tyr Thr Cys Asn Val Asp
195 200 205
His Lys Pro Ser Asn Thr Lys Val Asp Lys Arg Val Glu Ser Lys Tyr
210 215 220
Gly Pro Pro Cys Pro Pro Cys Pro Ala Pro Glu Phe Arg Gly Gly Pro
225 230 235 240
Lys Val Phe Leu Phe Pro Pro Lys Pro Lys Asp Thr Leu Met Ile Ser
245 250 255
Arg Thr Pro Glu Val Thr Cys Val Val Val Asp Val Ser Gln Glu Asp
260 265 270
Pro Glu Val Gln Phe Asn Trp Tyr Val Asp Gly Val Glu Val His Asn
275 280 285
Ala Lys Thr Lys Pro Arg Glu Glu Gln Phe Ala Ser Thr Tyr Arg Val
290 295 300
Val Ser Val Leu Thr Val Leu His Gln Asp Trp Leu Asn Gly Lys Glu
305 310 315 320
Tyr Lys Cys Lys Val Ser Asn Lys Gly Leu Pro Ser Ser Ile Glu Lys
325 330 335
Thr Ile Ser Lys Ala Lys Gly Gln Pro Arg Glu Pro Gln Val Tyr Thr
340 345 350
Leu Pro Pro Ser Gln Lys Glu Met Thr Lys Asn Gln Val Ser Leu Thr
355 360 365
Cys Leu Val Lys Gly Phe Tyr Pro Ser Asp Ile Ala Val Glu Trp Glu
370 375 380
Ser Asn Gly Gln Pro Glu Asn Asn Tyr Lys Thr Thr Pro Pro Val Leu
385 390 395 400
Asp Ser Asp Gly Ser Phe Phe Leu Tyr Ser Lys Leu Thr Val Asp Lys
405 410 415
Ser Arg Trp Gln Glu Gly Asn Val Phe Ser Cys Ser Val Met His Glu
420 425 430
Ala Leu His Asn His Tyr Thr Gln Lys Ser Leu Ser Leu Ser Pro
435 440 445
<210> 403
<211> 450
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 403
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Leu Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Ser Gln Asn
85 90 95
Thr His Val Pro Pro Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
Ser Ser Ala Ser Thr Lys Gly Pro Ser Val Phe Pro Leu Ala Pro Ser
115 120 125
Ser Lys Ser Thr Ser Gly Gly Thr Ala Ala Leu Gly Cys Leu Val Lys
130 135 140
Asp Tyr Phe Pro Glu Pro Val Thr Val Ser Trp Asn Ser Gly Ala Leu
145 150 155 160
Thr Ser Gly Val His Thr Phe Pro Ala Val Leu Gln Ser Ser Gly Leu
165 170 175
Tyr Ser Leu Ser Ser Val Val Thr Val Pro Ser Ser Ser Leu Gly Thr
180 185 190
Gln Thr Tyr Ile Cys Asn Val Asn His Lys Pro Ser Asn Thr Lys Val
195 200 205
Asp Lys Lys Val Glu Pro Lys Ser Cys Asp Lys Thr His Thr Cys Pro
210 215 220
Pro Cys Pro Ala Pro Glu Ala Ala Gly Gly Pro Ser Val Phe Leu Phe
225 230 235 240
Pro Pro Lys Pro Lys Asp Thr Leu Met Ile Ser Arg Thr Pro Glu Val
245 250 255
Thr Cys Val Val Val Asp Val Ser His Glu Asp Pro Glu Val Lys Phe
260 265 270
Asn Trp Tyr Val Asp Gly Val Glu Val His Asn Ala Lys Thr Lys Pro
275 280 285
Arg Glu Glu Gln Tyr Ala Ser Thr Tyr Arg Val Val Ser Val Leu Thr
290 295 300
Val Leu His Gln Asp Trp Leu Asn Gly Lys Glu Tyr Lys Cys Lys Val
305 310 315 320
Ser Asn Lys Ala Leu Pro Ala Pro Ile Glu Lys Thr Ile Ser Lys Ala
325 330 335
Lys Gly Gln Pro Arg Glu Pro Gln Val Cys Thr Leu Pro Pro Ser Arg
340 345 350
Asp Glu Leu Thr Lys Asn Gln Val Ser Leu Trp Cys Leu Val Lys Gly
355 360 365
Phe Tyr Pro Ser Asp Ile Ala Val Glu Trp Glu Ser Asn Gly Gln Pro
370 375 380
Glu Asn Asn Tyr Lys Thr Thr Pro Pro Val Leu Asp Ser Asp Gly Ser
385 390 395 400
Phe Phe Leu Tyr Ser Lys Leu Thr Val Asp Lys Ser Arg Trp Gln Gln
405 410 415
Gly Asn Val Phe Ser Cys Ser Val Met His Glu Ala Leu His Asn His
420 425 430
Tyr Thr Gln Lys Ser Leu Ser Leu Ser Pro His His His His His His
435 440 445
His His
450
<210> 404
<211> 450
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 404
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Leu Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
Ser Ser Ala Ser Thr Lys Gly Pro Ser Val Phe Pro Leu Ala Pro Ser
115 120 125
Ser Lys Ser Thr Ser Gly Gly Thr Ala Ala Leu Gly Cys Leu Val Lys
130 135 140
Asp Tyr Phe Pro Glu Pro Val Thr Val Ser Trp Asn Ser Gly Ala Leu
145 150 155 160
Thr Ser Gly Val His Thr Phe Pro Ala Val Leu Gln Ser Ser Gly Leu
165 170 175
Tyr Ser Leu Ser Ser Val Val Thr Val Pro Ser Ser Ser Leu Gly Thr
180 185 190
Gln Thr Tyr Ile Cys Asn Val Asn His Lys Pro Ser Asn Thr Lys Val
195 200 205
Asp Lys Lys Val Glu Pro Lys Ser Cys Asp Lys Thr His Thr Cys Pro
210 215 220
Pro Cys Pro Ala Pro Glu Ala Ala Gly Gly Pro Ser Val Phe Leu Phe
225 230 235 240
Pro Pro Lys Pro Lys Asp Thr Leu Met Ile Ser Arg Thr Pro Glu Val
245 250 255
Thr Cys Val Val Val Asp Val Ser His Glu Asp Pro Glu Val Lys Phe
260 265 270
Asn Trp Tyr Val Asp Gly Val Glu Val His Asn Ala Lys Thr Lys Pro
275 280 285
Arg Glu Glu Gln Tyr Ala Ser Thr Tyr Arg Val Val Ser Val Leu Thr
290 295 300
Val Leu His Gln Asp Trp Leu Asn Gly Lys Glu Tyr Lys Cys Lys Val
305 310 315 320
Ser Asn Lys Ala Leu Pro Ala Pro Ile Glu Lys Thr Ile Ser Lys Ala
325 330 335
Lys Gly Gln Pro Arg Glu Pro Gln Val Cys Thr Leu Pro Pro Ser Arg
340 345 350
Asp Glu Leu Thr Lys Asn Gln Val Ser Leu Trp Cys Leu Val Lys Gly
355 360 365
Phe Tyr Pro Ser Asp Ile Ala Val Glu Trp Glu Ser Asn Gly Gln Pro
370 375 380
Glu Asn Asn Tyr Lys Thr Thr Pro Pro Val Leu Asp Ser Asp Gly Ser
385 390 395 400
Phe Phe Leu Tyr Ser Lys Leu Thr Val Asp Lys Ser Arg Trp Gln Gln
405 410 415
Gly Asn Val Phe Ser Cys Ser Val Met His Glu Ala Leu His Asn His
420 425 430
Tyr Thr Gln Lys Ser Leu Ser Leu Ser Pro His His His His His His
435 440 445
His His
450
<210> 405
<211> 222
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 405
Gln Val Gln Leu Val Gln Ser Gly Ala Glu Val Lys Lys Pro Gly Ala
1 5 10 15
Ser Val Lys Val Ser Cys Lys Ala Ser Gly Tyr Thr Phe Thr Asp Tyr
20 25 30
Glu Met His Trp Ile Arg Gln Pro Pro Gly Gln Gly Leu Glu Trp Ile
35 40 45
Gly Ala Ile Asp Pro Lys Thr Gly Asp Thr Ala Tyr Ser Gln Lys Phe
50 55 60
Lys Gly Arg Val Thr Leu Thr Ala Asp Lys Ser Thr Ser Thr Ala Tyr
65 70 75 80
Met Glu Leu Ser Ser Leu Thr Ser Glu Asp Thr Ala Val Tyr Tyr Cys
85 90 95
Thr Arg Phe Tyr Ser Tyr Thr Tyr Trp Gly Gln Gly Thr Leu Val Thr
100 105 110
Val Ser Ser Ala Ser Val Ala Ala Pro Ser Val Phe Ile Phe Pro Pro
115 120 125
Ser Asp Glu Gln Leu Lys Ser Gly Thr Ala Ser Val Val Cys Leu Leu
130 135 140
Asn Asn Phe Tyr Pro Arg Glu Ala Lys Val Gln Trp Lys Val Asp Asn
145 150 155 160
Ala Leu Gln Ser Gly Asn Ser Gln Glu Ser Val Thr Glu Gln Asp Ser
165 170 175
Lys Asp Ser Thr Tyr Ser Leu Ser Ser Thr Leu Thr Leu Ser Lys Ala
180 185 190
Asp Tyr Glu Lys His Lys Val Tyr Ala Cys Glu Val Thr His Gln Gly
195 200 205
Leu Ser Ser Pro Val Thr Lys Ser Phe Asn Arg Gly Glu Cys
210 215 220
<210> 406
<211> 222
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 406
Gln Val Gln Leu Val Gln Ser Gly Ala Glu Val Lys Lys Pro Gly Ala
1 5 10 15
Ser Val Lys Val Ser Cys Lys Ala Ser Gly Tyr Thr Phe Thr Asp Tyr
20 25 30
Glu Met His Trp Ile Arg Gln Pro Pro Gly Gln Gly Leu Glu Trp Ile
35 40 45
Gly Ala Ile Asp Gly Lys Thr Pro Asp Thr Ala Tyr Ser Gln Lys Phe
50 55 60
Lys Gly Arg Val Thr Leu Thr Ala Asp Lys Ser Thr Ser Thr Ala Tyr
65 70 75 80
Met Glu Leu Ser Ser Leu Thr Ser Glu Asp Thr Ala Val Tyr Tyr Cys
85 90 95
Thr Arg Phe Tyr Ser Tyr Thr Tyr Trp Gly Gln Gly Thr Leu Val Thr
100 105 110
Val Ser Ser Ala Ser Val Ala Ala Pro Ser Val Phe Ile Phe Pro Pro
115 120 125
Ser Asp Glu Gln Leu Lys Ser Gly Thr Ala Ser Val Val Cys Leu Leu
130 135 140
Asn Asn Phe Tyr Pro Arg Glu Ala Lys Val Gln Trp Lys Val Asp Asn
145 150 155 160
Ala Leu Gln Ser Gly Asn Ser Gln Glu Ser Val Thr Glu Gln Asp Ser
165 170 175
Lys Asp Ser Thr Tyr Ser Leu Ser Ser Thr Leu Thr Leu Ser Lys Ala
180 185 190
Asp Tyr Glu Lys His Lys Val Tyr Ala Cys Glu Val Thr His Gln Gly
195 200 205
Leu Ser Ser Pro Val Thr Lys Ser Phe Asn Arg Gly Glu Cys
210 215 220
<210> 407
<211> 219
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 407
Asp Val Val Met Thr Gln Thr Pro Val Ser Met Ser Val Ser Leu Gly
1 5 10 15
Gly Gln Val Ser Ile Ser Cys Arg Ser Ser Gln Ser Leu Val His Asn
20 25 30
Asn Gly Asn Thr Tyr Val Ser Trp Tyr Ile Gln Lys Pro Ser Gln Ser
35 40 45
Pro Gln Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Ile Ser
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Pro Asp Asp Leu Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Asp Pro Tyr Thr Phe Gly Ala Gly Thr Lys Leu Glu Leu Lys
100 105 110
Arg Thr Val Ala Ala Pro Ser Val Phe Ile Phe Pro Pro Ser Asp Glu
115 120 125
Gln Leu Lys Ser Gly Thr Ala Ser Val Val Cys Leu Leu Asn Asn Phe
130 135 140
Tyr Pro Arg Glu Ala Lys Val Gln Trp Lys Val Asp Asn Ala Leu Gln
145 150 155 160
Ser Gly Asn Ser Gln Glu Ser Val Thr Glu Gln Asp Ser Lys Asp Ser
165 170 175
Thr Tyr Ser Leu Ser Ser Thr Leu Thr Leu Ser Lys Ala Asp Tyr Glu
180 185 190
Lys His Lys Val Tyr Ala Cys Glu Val Thr His Gln Gly Leu Ser Ser
195 200 205
Pro Val Thr Lys Ser Phe Asn Arg Gly Glu Cys
210 215
<210> 408
<211> 219
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 408
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Leu Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu Ser Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
Arg Thr Val Ala Ala Pro Ser Val Phe Ile Phe Pro Pro Ser Asp Glu
115 120 125
Gln Leu Lys Ser Gly Thr Ala Ser Val Val Cys Leu Leu Asn Asn Phe
130 135 140
Tyr Pro Arg Glu Ala Lys Val Gln Trp Lys Val Asp Asn Ala Leu Gln
145 150 155 160
Ser Gly Asn Ser Gln Glu Ser Val Thr Glu Gln Asp Ser Lys Asp Ser
165 170 175
Thr Tyr Ser Leu Ser Ser Thr Leu Thr Leu Ser Lys Ala Asp Tyr Glu
180 185 190
Lys His Lys Val Tyr Ala Cys Glu Val Thr His Gln Gly Leu Ser Ser
195 200 205
Pro Val Thr Lys Ser Phe Asn Arg Gly Glu Cys
210 215
<210> 409
<211> 219
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 409
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Leu Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
Arg Thr Val Ala Ala Pro Ser Val Phe Ile Phe Pro Pro Ser Asp Glu
115 120 125
Gln Leu Lys Ser Gly Thr Ala Ser Val Val Cys Leu Leu Asn Asn Phe
130 135 140
Tyr Pro Arg Glu Ala Lys Val Gln Trp Lys Val Asp Asn Ala Leu Gln
145 150 155 160
Ser Gly Asn Ser Gln Glu Ser Val Thr Glu Gln Asp Ser Lys Asp Ser
165 170 175
Thr Tyr Ser Leu Ser Ser Thr Leu Thr Leu Ser Lys Ala Asp Tyr Glu
180 185 190
Lys His Lys Val Tyr Ala Cys Glu Val Thr His Gln Gly Leu Ser Ser
195 200 205
Pro Val Thr Lys Ser Phe Asn Arg Gly Glu Cys
210 215
<210> 410
<211> 219
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 410
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Pro Leu Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
Arg Thr Val Ala Ala Pro Ser Val Phe Ile Phe Pro Pro Ser Asp Glu
115 120 125
Gln Leu Lys Ser Gly Thr Ala Ser Val Val Cys Leu Leu Asn Asn Phe
130 135 140
Tyr Pro Arg Glu Ala Lys Val Gln Trp Lys Val Asp Asn Ala Leu Gln
145 150 155 160
Ser Gly Asn Ser Gln Glu Ser Val Thr Glu Gln Asp Ser Lys Asp Ser
165 170 175
Thr Tyr Ser Leu Ser Ser Thr Leu Thr Leu Ser Lys Ala Asp Tyr Glu
180 185 190
Lys His Lys Val Tyr Ala Cys Glu Val Thr His Gln Gly Leu Ser Ser
195 200 205
Pro Val Thr Lys Ser Phe Asn Arg Gly Glu Cys
210 215
<210> 411
<211> 219
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 411
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Pro Pro Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
Arg Thr Val Ala Ala Pro Ser Val Phe Ile Phe Pro Pro Ser Asp Glu
115 120 125
Gln Leu Lys Ser Gly Thr Ala Ser Val Val Cys Leu Leu Asn Asn Phe
130 135 140
Tyr Pro Arg Glu Ala Lys Val Gln Trp Lys Val Asp Asn Ala Leu Gln
145 150 155 160
Ser Gly Asn Ser Gln Glu Ser Val Thr Glu Gln Asp Ser Lys Asp Ser
165 170 175
Thr Tyr Ser Leu Ser Ser Thr Leu Thr Leu Ser Lys Ala Asp Tyr Glu
180 185 190
Lys His Lys Val Tyr Ala Cys Glu Val Thr His Gln Gly Leu Ser Ser
195 200 205
Pro Val Thr Lys Ser Phe Asn Arg Gly Glu Cys
210 215
<210> 412
<211> 219
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 412
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Pro Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Ile His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
Arg Thr Val Ala Ala Pro Ser Val Phe Ile Phe Pro Pro Ser Asp Glu
115 120 125
Gln Leu Lys Ser Gly Thr Ala Ser Val Val Cys Leu Leu Asn Asn Phe
130 135 140
Tyr Pro Arg Glu Ala Lys Val Gln Trp Lys Val Asp Asn Ala Leu Gln
145 150 155 160
Ser Gly Asn Ser Gln Glu Ser Val Thr Glu Gln Asp Ser Lys Asp Ser
165 170 175
Thr Tyr Ser Leu Ser Ser Thr Leu Thr Leu Ser Lys Ala Asp Tyr Glu
180 185 190
Lys His Lys Val Tyr Ala Cys Glu Val Thr His Gln Gly Leu Ser Ser
195 200 205
Pro Val Thr Lys Ser Phe Asn Arg Gly Glu Cys
210 215
<210> 413
<211> 219
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 413
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Pro Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Arg Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
Arg Thr Val Ala Ala Pro Ser Val Phe Ile Phe Pro Pro Ser Asp Glu
115 120 125
Gln Leu Lys Ser Gly Thr Ala Ser Val Val Cys Leu Leu Asn Asn Phe
130 135 140
Tyr Pro Arg Glu Ala Lys Val Gln Trp Lys Val Asp Asn Ala Leu Gln
145 150 155 160
Ser Gly Asn Ser Gln Glu Ser Val Thr Glu Gln Asp Ser Lys Asp Ser
165 170 175
Thr Tyr Ser Leu Ser Ser Thr Leu Thr Leu Ser Lys Ala Asp Tyr Glu
180 185 190
Lys His Lys Val Tyr Ala Cys Glu Val Thr His Gln Gly Leu Ser Ser
195 200 205
Pro Val Thr Lys Ser Phe Asn Arg Gly Glu Cys
210 215
<210> 414
<211> 219
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 414
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Pro Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Tyr Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
Arg Thr Val Ala Ala Pro Ser Val Phe Ile Phe Pro Pro Ser Asp Glu
115 120 125
Gln Leu Lys Ser Gly Thr Ala Ser Val Val Cys Leu Leu Asn Asn Phe
130 135 140
Tyr Pro Arg Glu Ala Lys Val Gln Trp Lys Val Asp Asn Ala Leu Gln
145 150 155 160
Ser Gly Asn Ser Gln Glu Ser Val Thr Glu Gln Asp Ser Lys Asp Ser
165 170 175
Thr Tyr Ser Leu Ser Ser Thr Leu Thr Leu Ser Lys Ala Asp Tyr Glu
180 185 190
Lys His Lys Val Tyr Ala Cys Glu Val Thr His Gln Gly Leu Ser Ser
195 200 205
Pro Val Thr Lys Ser Phe Asn Arg Gly Glu Cys
210 215
<210> 415
<211> 219
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 415
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Pro Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Trp Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Tyr Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
Arg Thr Val Ala Ala Pro Ser Val Phe Ile Phe Pro Pro Ser Asp Glu
115 120 125
Gln Leu Lys Ser Gly Thr Ala Ser Val Val Cys Leu Leu Asn Asn Phe
130 135 140
Tyr Pro Arg Glu Ala Lys Val Gln Trp Lys Val Asp Asn Ala Leu Gln
145 150 155 160
Ser Gly Asn Ser Gln Glu Ser Val Thr Glu Gln Asp Ser Lys Asp Ser
165 170 175
Thr Tyr Ser Leu Ser Ser Thr Leu Thr Leu Ser Lys Ala Asp Tyr Glu
180 185 190
Lys His Lys Val Tyr Ala Cys Glu Val Thr His Gln Gly Leu Ser Ser
195 200 205
Pro Val Thr Lys Ser Phe Asn Arg Gly Glu Cys
210 215
<210> 416
<211> 219
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 416
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Pro Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Ile His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Tyr Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
Arg Thr Val Ala Ala Pro Ser Val Phe Ile Phe Pro Pro Ser Asp Glu
115 120 125
Gln Leu Lys Ser Gly Thr Ala Ser Val Val Cys Leu Leu Asn Asn Phe
130 135 140
Tyr Pro Arg Glu Ala Lys Val Gln Trp Lys Val Asp Asn Ala Leu Gln
145 150 155 160
Ser Gly Asn Ser Gln Glu Ser Val Thr Glu Gln Asp Ser Lys Asp Ser
165 170 175
Thr Tyr Ser Leu Ser Ser Thr Leu Thr Leu Ser Lys Ala Asp Tyr Glu
180 185 190
Lys His Lys Val Tyr Ala Cys Glu Val Thr His Gln Gly Leu Ser Ser
195 200 205
Pro Val Thr Lys Ser Phe Asn Arg Gly Glu Cys
210 215
<210> 417
<211> 219
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 417
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Pro Pro Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Tyr Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
Arg Thr Val Ala Ala Pro Ser Val Phe Ile Phe Pro Pro Ser Asp Glu
115 120 125
Gln Leu Lys Ser Gly Thr Ala Ser Val Val Cys Leu Leu Asn Asn Phe
130 135 140
Tyr Pro Arg Glu Ala Lys Val Gln Trp Lys Val Asp Asn Ala Leu Gln
145 150 155 160
Ser Gly Asn Ser Gln Glu Ser Val Thr Glu Gln Asp Ser Lys Asp Ser
165 170 175
Thr Tyr Ser Leu Ser Ser Thr Leu Thr Leu Ser Lys Ala Asp Tyr Glu
180 185 190
Lys His Lys Val Tyr Ala Cys Glu Val Thr His Gln Gly Leu Ser Ser
195 200 205
Pro Val Thr Lys Ser Phe Asn Arg Gly Glu Cys
210 215
<210> 418
<211> 219
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 418
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Pro Ser Gln Ser Pro Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Tyr Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
Arg Thr Val Ala Ala Pro Ser Val Phe Ile Phe Pro Pro Ser Asp Glu
115 120 125
Gln Leu Lys Ser Gly Thr Ala Ser Val Val Cys Leu Leu Asn Asn Phe
130 135 140
Tyr Pro Arg Glu Ala Lys Val Gln Trp Lys Val Asp Asn Ala Leu Gln
145 150 155 160
Ser Gly Asn Ser Gln Glu Ser Val Thr Glu Gln Asp Ser Lys Asp Ser
165 170 175
Thr Tyr Ser Leu Ser Ser Thr Leu Thr Leu Ser Lys Ala Asp Tyr Glu
180 185 190
Lys His Lys Val Tyr Ala Cys Glu Val Thr His Gln Gly Leu Ser Ser
195 200 205
Pro Val Thr Lys Ser Phe Asn Arg Gly Glu Cys
210 215
<210> 419
<211> 219
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 419
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Pro Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Ile Gln Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Tyr Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
Arg Thr Val Ala Ala Pro Ser Val Phe Ile Phe Pro Pro Ser Asp Glu
115 120 125
Gln Leu Lys Ser Gly Thr Ala Ser Val Val Cys Leu Leu Asn Asn Phe
130 135 140
Tyr Pro Arg Glu Ala Lys Val Gln Trp Lys Val Asp Asn Ala Leu Gln
145 150 155 160
Ser Gly Asn Ser Gln Glu Ser Val Thr Glu Gln Asp Ser Lys Asp Ser
165 170 175
Thr Tyr Ser Leu Ser Ser Thr Leu Thr Leu Ser Lys Ala Asp Tyr Glu
180 185 190
Lys His Lys Val Tyr Ala Cys Glu Val Thr His Gln Gly Leu Ser Ser
195 200 205
Pro Val Thr Lys Ser Phe Asn Arg Gly Glu Cys
210 215
<210> 420
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 420
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Val Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Ala Lys Ser Asn Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Asp Asp Ser Lys Asn Ser
65 70 75 80
Leu Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Tyr Tyr Tyr Tyr Gly Val Gln Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 421
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 421
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Val Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Ala Lys Ser Asn Asn Tyr Lys Lys Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Asp Asp Ser Lys Asn Ser
65 70 75 80
Leu Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Tyr Tyr Tyr Tyr Gly Val Gln Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 422
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 422
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Val Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Ala Lys Ser Asn Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Asp Asp Ser Lys Asn Ser
65 70 75 80
Leu Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Arg Val His Tyr Gly Ala Tyr Tyr Gly Val Asp Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 423
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 423
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Val Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Ala Lys Ser Asn Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Asp Asp Ser Lys Asn Ser
65 70 75 80
Leu Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Arg Val His Tyr Tyr Tyr Tyr Tyr Gly Val Asp Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 424
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 424
Glu Val Gln Leu Val Glu Thr Gly Gly Ser Leu Val Gln Pro Gly Lys
1 5 10 15
Ser Leu Lys Leu Thr Cys Ala Thr Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ser Pro Glu Lys Gln Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Ala Lys Ser Asn Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Asp Asp Ser Lys Ser Asn
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Glu Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Gly Ala Tyr Tyr Gly Val Asp Ala Trp
100 105 110
Gly Gln Gly Thr Ser Val Thr Val Ser Ser
115 120
<210> 425
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 425
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Val Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Leu Ile Lys Ala Lys Ser Asn Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Asp Asp Ser Lys Asn Ser
65 70 75 80
Leu Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Gly Ala Tyr Tyr Gly Val Asp Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 426
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 426
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Val Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Asn Ile Lys Ala Lys Ser Asn Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Asp Asp Ser Lys Asn Ser
65 70 75 80
Leu Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Gly Ala Tyr Tyr Gly Val Asp Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 427
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 427
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Val Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Ala Leu Ser Asn Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Asp Asp Ser Lys Asn Ser
65 70 75 80
Leu Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Gly Ala Tyr Tyr Gly Val Asp Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 428
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 428
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Val Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Ala Lys Ser Asn Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Asp Asp Ser Lys Asn Ser
65 70 75 80
Leu Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Tyr Ala Tyr Tyr Gly Val Asp Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 429
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 429
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Val Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Ala Lys Ser Asn Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Asp Asp Ser Lys Asn Ser
65 70 75 80
Leu Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Tyr Ala Tyr Tyr Gly Val Gln Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 430
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 430
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Val Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Ala Lys Ser Asn Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Asp Asp Ser Lys Asn Ser
65 70 75 80
Leu Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Tyr Tyr Tyr Tyr Gly Val Asp Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 431
<211> 122
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 431
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Val Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Ala Lys Ser Asn Asn Tyr Lys Lys Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Asp Asp Ser Lys Asn Ser
65 70 75 80
Leu Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Tyr Tyr Tyr Tyr Gly Val Asp Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 432
<211> 107
<212> PRT
<213> Artificial
<220>
<223> An artificially generated sequence
<400> 432
Ala Ser Val Ala Ala Pro Ser Val Phe Ile Phe Pro Pro Ser Asp Glu
1 5 10 15
Gln Leu Lys Ser Gly Thr Ala Ser Val Val Cys Leu Leu Asn Asn Phe
20 25 30
Tyr Pro Arg Glu Ala Lys Val Gln Trp Lys Val Asp Asn Ala Leu Gln
35 40 45
Ser Gly Asn Ser Gln Glu Ser Val Thr Glu Gln Asp Ser Lys Asp Ser
50 55 60
Thr Tyr Ser Leu Ser Ser Thr Leu Thr Leu Ser Lys Ala Asp Tyr Glu
65 70 75 80
Lys His Lys Val Tyr Ala Cys Glu Val Thr His Gln Gly Leu Ser Ser
85 90 95
Pro Val Thr Lys Ser Phe Asn Arg Gly Glu Cys
100 105
SEQUENCE LISTING
<110> CHUGAI SEIYAKU KABUSHIKI KAISHA
<120> THERAPEUTIC AGENT THAT INDUCES CYTOTOXICITY
<130> C1-A1408P
<150> JP 2014-197315
<151> 2014-09-26
<160> 432
<170> PatentIn version 3.5
<210> 1
<211> 2398
<212> DNA
<213> Homo sapiens
<400> 1
agccccgccc tgccccgcgc cgccaagcgg ttcccgccct cgcccagcgc ccaggtagct 60
gcgaggaaac ttttgcagcg gctgggtagc agcacgtctc ttgctcctca gggccactgc 120
caggcttgcc gagtcctggg actgctctcg ctccggctgc cactctcccg cgctctccta 180
gctccctgcg aagcaggatg gccgggaccg tgcgcaccgc gtgcttggtg gtggcgatgc 240
tgctcagctt ggacttcccg ggacaggcgc agcccccgcc gccgccgccg gacgccacct 300
gtcaccaagt ccgctccttc ttccagagac tgcagcccgg actcaagtgg gtgccagaaa 360
ctcccgtgcc aggatcagat ttgcaagtat gtctccctaa gggcccaaca tgctgctcaa 420
gaaagatgga agaaaaatac caactaacag cacgattgaa catggaacag ctgcttcagt 480
ctgcaagtat ggagctcaag ttcttaatta ttcagaatgc tgcggttttc caagaggcct 540
ttgaaattgt tgttcgccat gccaagaact acaccaatgc catgttcaag aacaactacc 600
caagcctgac tccgaagct tttgagtttg tgggtgaatt tttcacagat gtgtctctct 660
acatcttggg ttctgacatc aatgtagatg acatggtcaa tgaattgttt gacagcctgt 720
ttccagtcat ctatacccag ctaatgaacc caggcctgcc tgattcagcc ttggacatca 780
atgagtgcct ccgaggagca agacgtgacc tgaaagtatt tgggaatttc cccaagctta 840
ttatgaccca ggtttccaag tcactgcaag tcactaggat cttccttcag gctctgaatc 900
ttggaattga agtgatcaac acaactgatc acctgaagtt cagtaaggac tgtggccgaa 960
tgctcaccag aatgtggtac tgctcttact gccagggact gatgatggtt aaaccctgtg 1020
gcggttactg caatgtggtc atgcaaggct gtatggcagg tgtggtggag attgacaagt 1080
actggagaga atacattctg tcccttgaag aacttgtgaa tggcatgtac agaatctatg 1140
acatggagaa cgtactgctt ggtctctttt caacaatcca tgattctatc cagtatgtcc 1200
agaagaatgc aggaaagctg accaccactg aaactgagaa gaaaatatgg cacttcaaat 1260
atcctatctt cttcctgtgt atagggctag acttacagat tggcaagtta tgtgcccatt 1320
ctcaacaacg ccaatataga tctgcttatt atcctgaaga tctctttatt gacaagaaag 1380
tattaaaagt tgctcatgta gaacatgaag aaaccttatc cagccgaaga agggaactaa 1440
ttcagaagtt gaagtctttc atcagcttct atagtgcttt gcctggctac atctgcagcc 1500
atagccctgt ggcggaaaac gacacccttt gctggaatgg acaagaactc gtggagagat 1560
acagccaaaa ggcagcaagg aatggaatga aaaaccagtt caatctccat gagctgaaaa 1620
tgaagggccc tgagccagtg gtcagtcaaa ttattgacaa actgaagcac attaaccagc 1680
tcctgagaac catgtctatg cccaaaggta gagttctgga taaaaacctg gatgaggaag 1740
ggtttgaaag tggagactgc ggtgatgatg aagatgagtg cattggaggc tctggtgatg 1800
gaatgataaa agtgaagaat cagctccgct tccttgcaga actggcctat gatctggatg 1860
tggatgatgc gcctggaaac agtcagcagg caactccgaa ggacaacgag ataagcacct 1920
ttcacaacct cgggaacgtt cattccccgc tgaagcttct caccagcatg gccatctcgg 1980
tggtgtgctt cttcttcctg gtgcactgac tgcctggtgc ccagcacatg tgctgcccta 2040
cagcaccctg tggtcttcct cgataaaggg aaccactttc ttattttttt ctattttttt 2100
ttttttgtta tcctgtatac ctcctccagc catgaagtag aggactaacc atgtgttatg 2160
ttttcgaaaa tcaaatggta tcttttggag gaagatacat tttagtggta gcatatagat 2220
tgtccttttg caaagaaaga aaaaaaacca tcaagttgtg ccaaattatt ctcctatgtt 2280
tggctgctag aacatggtta ccatgtcttt ctctctcact ccctcccttt ctatcgttct 2340
ctctttgcat ggatttcttt gaaaaaaaat aaattgctca aataaaaaaa aaaaaaaa 2398
<210> 2
<211> 603
<212> PRT
<213> Homo sapiens
<400> 2
Met Ala Gly Thr Val Arg Thr Ala Cys Leu Val Val Ala Met Leu Leu
1 5 10 15
Ser Leu Asp Phe Pro Gly Gln Ala Gln Pro Pro Pro Pro Pro Asp
20 25 30
Ala Thr Cys His Gln Val Arg Ser Phe Phe Gln Arg Leu Gln Pro Gly
35 40 45
Leu Lys Trp Val Pro Glu Thr Pro Val Pro Gly Ser Asp Leu Gln Val
50 55 60
Cys Leu Pro Lys Gly Pro Thr Cys Cys Ser Arg Lys Met Glu Glu Lys
65 70 75 80
Tyr Gln Leu Thr Ala Arg Leu Asn Met Glu Gln Leu Leu Gln Ser Ala
85 90 95
Ser Met Glu Leu Lys Phe Leu Ile Ile Gln Asn Ala Ala Val Phe Gln
100 105 110
Glu Ala Phe Glu Ile Val Val Arg His Ala Lys Asn Tyr Thr Asn Ala
115 120 125
Met Phe Lys Asn Asn Tyr Pro Ser Leu Thr Pro Gln Ala Phe Glu Phe
130 135 140
Val Gly Glu Phe Phe Thr Asp Val Ser Leu Tyr Ile Leu Gly Ser Asp
145 150 155 160
Ile Asn Val Asp Asp Met Val Asn Glu Leu Phe Asp Ser Leu Phe Pro
165 170 175
Val Ile Tyr Thr Gln Leu Met Asn Pro Gly Leu Pro Asp Ser Ala Leu
180 185 190
Asp Ile Asn Glu Cys Leu Arg Gly Ala Arg Arg Asp Leu Lys Val Phe
195 200 205
Gly Asn Phe Pro Lys Leu Ile Met Thr Gln Val Ser Lys Ser Leu Gln
210 215 220
Val Thr Arg Ile Phe Leu Gln Ala Leu Asn Leu Gly Ile Glu Val Ile
225 230 235 240
Asn Thr Thr Asp His Leu Lys Phe Ser Lys Asp Cys Gly Arg Met Leu
245 250 255
Thr Arg Met Trp Tyr Cys Ser Tyr Cys Gln Gly Leu Met Met Val Lys
260 265 270
Pro Cys Gly Gly Tyr Cys Asn Val Val Met Gln Gly Cys Met Ala Gly
275 280 285
Val Val Glu Ile Asp Lys Tyr Trp Arg Glu Tyr Ile Leu Ser Leu Glu
290 295 300
Glu Leu Val Asn Gly Met Tyr Arg Ile Tyr Asp Met Glu Asn Val Leu
305 310 315 320
Leu Gly Leu Phe Ser Thr Ile His Asp Ser Ile Gln Tyr Val Gln Lys
325 330 335
Asn Ala Gly Lys Leu Thr Thr Thr Glu Thr Glu Lys Lys Ile Trp His
340 345 350
Phe Lys Tyr Pro Ile Phe Phe Leu Cys Ile Gly Leu Asp Leu Gln Ile
355 360 365
Gly Lys Leu Cys Ala His Ser Gln Gln Arg Gln Tyr Arg Ser Ala Tyr
370 375 380
Tyr Pro Glu Asp Leu Phe Ile Asp Lys Lys Val Leu Lys Val Ala His
385 390 395 400
Val Glu His Glu Glu Thr Leu Ser Ser Arg Arg Glu Leu Ile Gln
405 410 415
Lys Leu Lys Ser Phe Ile Ser Phe Tyr Ser Ala Leu Pro Gly Tyr Ile
420 425 430
Cys Ser His Ser Pro Val Ala Glu Asn Asp Thr Leu Cys Trp Asn Gly
435 440 445
Gln Glu Leu Val Glu Arg Tyr Ser Gln Lys Ala Ala Arg Asn Gly Met
450 455 460
Lys Asn Gln Phe Asn Leu His Glu Leu Lys Met Lys Gly Pro Glu Pro
465 470 475 480
Val Val Ser Gln Ile Ile Asp Lys Leu Lys His Ile Asn Gln Leu Leu
485 490 495
Arg Thr Met Ser Met Pro Lys Gly Arg Val Leu Asp Lys Asn Leu Asp
500 505 510
Glu Glu Gly Phe Glu Ser Gly Asp Cys Gly Asp Asp Glu Asp Glu Cys
515 520 525
Ile Gly Gly Ser Gly Asp Gly Met Ile Lys Val Lys Asn Gln Leu Arg
530 535 540
Phe Leu Ala Glu Leu Ala Tyr Asp Leu Asp Val Asp Asp Ala Pro Gly
545 550 555 560
Asn Ser Gln Gln Ala Thr Pro Lys Asp Asn Glu Ile Ser Thr Phe His
565 570 575
Asn Leu Gly Asn Val His Ser Pro Leu Lys Leu Leu Thr Ser Met Ala
580 585 590
Ile Ser Val Val Cys Phe Phe Phe Leu Val His
595 600
<210> 3
<211> 19
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 3
Met Gly Trp Ser Cys Ile Ile Leu Phe Leu Val Ala Thr Ala Thr Gly
1 5 10 15
Val His Ser
<210> 4
<211> 141
<212> PRT
<213> Homo sapiens
<400> 4
Asp Ile Gln Asn Pro Asp Pro Ala Val Tyr Gln Leu Arg Asp Ser Lys
1 5 10 15
Ser Ser Asp Lys Ser Val Cys Leu Phe Thr Asp Phe Asp Ser Gln Thr
20 25 30
Asn Val Ser Gln Ser Lys Asp Ser Asp Val Tyr Ile Thr Asp Lys Thr
35 40 45
Val Leu Asp Met Arg Ser Met Asp Phe Lys Ser Asn Ser Ala Val Ala
50 55 60
Trp Ser Asn Lys Ser Asp Phe Ala Cys Ala Asn Ala Phe Asn Asn Ser
65 70 75 80
Ile Ile Pro Glu Asp Thr Phe Phe Pro Ser Pro Glu Ser Ser Cys Asp
85 90 95
Val Lys Leu Val Glu Lys Ser Phe Glu Thr Asp Thr Asn Leu Asn Phe
100 105 110
Gln Asn Leu Ser Val Ile Gly Phe Arg Ile Leu Leu Leu Lys Val Ala
115 120 125
Gly Phe Asn Leu Leu Met Thr Leu Arg Leu Trp Ser Ser
130 135 140
<210> 5
<211> 179
<212> PRT
<213> Homo sapiens
<400> 5
Glu Asp Leu Lys Asn Val Phe Pro Pro Glu Val Ala Val Phe Glu Pro
1 5 10 15
Ser Glu Ala Glu Ile Ser His Thr Gln Lys Ala Thr Leu Val Cys Leu
20 25 30
Ala Thr Gly Phe Tyr Pro Asp His Val Glu Leu Ser Trp Trp Val Asn
35 40 45
Gly Lys Glu Val His Ser Gly Val Ser Thr Asp Pro Gln Pro Leu Lys
50 55 60
Glu Gln Pro Ala Leu Asn Asp Ser Arg Tyr Cys Leu Ser Ser Leu
65 70 75 80
Arg Val Ser Ala Thr Phe Trp Gln Asn Pro Arg Asn His Phe Arg Cys
85 90 95
Gln Val Gln Phe Tyr Gly Leu Ser Glu Asn Asp Glu Trp Thr Gln Asp
100 105 110
Arg Ala Lys Pro Val Thr Gln Ile Val Ser Ala Glu Ala Trp Gly Arg
115 120 125
Ala Asp Cys Gly Phe Thr Ser Glu Ser Tyr Gln Gln Gly Val Leu Ser
130 135 140
Ala Thr Ile Leu Tyr Glu Ile Leu Leu Gly Lys Ala Thr Leu Tyr Ala
145 150 155 160
Val Leu Val Ser Ala Leu Val Leu Met Ala Met Val Lys Arg Lys Asp
165 170 175
Ser Arg Gly
<210> 6
<211> 173
<212> PRT
<213> Homo sapiens
<400> 6
Asp Lys Gln Leu Asp Ala Asp Val Ser Pro Lys Pro Thr Ile Phe Leu
1 5 10 15
Pro Ser Ile Ala Glu Thr Lys Leu Gln Lys Ala Gly Thr Tyr Leu Cys
20 25 30
Leu Leu Glu Lys Phe Phe Pro Asp Val Ile Lys Ile His Trp Gln Glu
35 40 45
Lys Lys Ser Asn Thr Ile Leu Gly Ser Gln Glu Gly Asn Thr Met Lys
50 55 60
Thr Asn Thr Tyr Met Lys Phe Ser Trp Leu Thr Val Pro Glu Lys
65 70 75 80
Ser Leu Asp Lys Glu His Arg Cys Ile Val Arg His Glu Asn Asn Lys
85 90 95
Asn Gly Val Asp Gln Glu Ile Ile Phe Pro Pro Ile Lys Thr Asp Val
100 105 110
Ile Thr Met Asp Pro Lys Asp Asn Cys Ser Lys Asp Ala Asn Asp Thr
115 120 125
Leu Leu Leu Gln Leu Thr Asn Thr Ser Ala Tyr Tyr Met Tyr Leu Leu
130 135 140
Leu Leu Leu Lys Ser Val Val Tyr Phe Ala Ile Ile Thr Cys Cys Leu
145 150 155 160
Leu Arg Arg Thr Ala Phe Cys Cys Asn Gly Glu Lys Ser
165 170
<210> 7
<211> 204
<212> PRT
<213> Homo sapiens
<400> 7
Lys Gln Leu Asp Ala Asp Val Ser Pro Lys Pro Thr Ile Phe Leu Pro
1 5 10 15
Ser Ile Ala Glu Thr Lys Leu Gln Lys Ala Gly Thr Tyr Leu Cys Leu
20 25 30
Leu Glu Lys Phe Phe Pro Asp Ile Ile Lys Ile His Trp Gln Glu Lys
35 40 45
Lys Ser Asn Thr Ile Leu Gly Ser Gln Glu Gly Asn Thr Met Lys Thr
50 55 60
Asn Asp Thr Tyr Met Lys Phe Ser Trp Leu Thr Val Pro Glu Glu Ser
65 70 75 80
Leu Asp Lys Glu His Arg Cys Ile Val Arg His Glu Asn Asn Lys Asn
85 90 95
Gly Ile Asp Gln Glu Ile Ile Phe Pro Pro Ile Lys Thr Asp Val Thr
100 105 110
Thr Val Asp Pro Lys Asp Ser Tyr Ser Lys Asp Ala Asn Asp Val Thr
115 120 125
Thr Val Asp Pro Lys Tyr Asn Tyr Ser Lys Asp Ala Asn Asp Val Ile
130 135 140
Thr Met Asp Pro Lys Asp Asn Trp Ser Lys Asp Ala Asn Asp Thr Leu
145 150 155 160
Leu Leu Gln Leu Thr Asn Thr Ser Ala Tyr Tyr Met Tyr Leu Leu Leu
165 170 175
Leu Leu Lys Ser Val Val Tyr Phe Ala Ile Ile Thr Cys Cys Leu Leu
180 185 190
Gly Arg Thr Ala Phe Cys Cys Asn Gly Glu Lys Ser
195 200
<210> 8
<211> 177
<212> PRT
<213> Homo sapiens
<400> 8
Pro Ser Tyr Thr Gly Gly Tyr Ala Asp Lys Leu Ile Phe Gly Lys Gly
1 5 10 15
Thr Arg Val Thr Val Glu Pro Arg Ser Gln Pro His Thr Lys Pro Ser
20 25 30
Val Phe Val Met Lys Asn Gly Thr Asn Val Ala Cys Leu Val Lys Glu
35 40 45
Phe Tyr Pro Lys Asp Ile Arg Ile Asn Leu Val Ser Ser Lys Lys Ile
50 55 60
Thr Glu Phe Asp Pro Ala Ile Val Ile Ser Pro Ser Gly Lys Tyr Asn
65 70 75 80
Ala Val Lys Leu Gly Lys Tyr Glu Asp Ser Asn Ser Val Thr Cys Ser
85 90 95
Val Gln His Asp Asn Lys Thr Val His Ser Thr Asp Phe Glu Val Lys
100 105 110
Thr Asp Ser Thr Asp His Val Lys Pro Lys Glu Thr Glu Asn Thr Lys
115 120 125
Gln Pro Ser Lys Ser Cys His Lys Pro Lys Ala Ile Val His Thr Glu
130 135 140
Lys Val Asn Met Met Ser Leu Thr Val Leu Gly Leu Arg Met Leu Phe
145 150 155 160
Ala Lys Thr Val Ala Val Asn Phe Leu Leu Thr Ala Lys Leu Phe Phe
165 170 175
Leu
<210> 9
<211> 1311
<212> DNA
<213> Homo sapiens
<400> 9
agtctagctg ctgcacaggc tggctggctg gctggctgct aagggctgct ccacgctttt 60
gccggaggac agagactgac atggaacagg ggaagggcct ggctgtcctc atcctggcta 120
tcattcttct tcaaggtact ttggcccagt caatcaaagg aaaccacttg gttaaggtgt 180
atgactatca agaagatggt tcggtacttc tgacttgtga tgcagaagcc aaaaatatca 240
catggtttaa agatgggaag atgatcggct tcctaactga agataaaaaa aaatggaatc 300
tgggaagtaa tgccaaggac cctcgaggga tgtatcagtg taaaggatca cagaacaagt 360
caaaaccact ccaagtgtat tacagaatgt gtcagaactg cattgaacta aatgcagcca 420
ccatatctgg ctttctcttt gctgaaatcg tcagcatttt cgtccttgct gttggggtct 480
acttcattgc tggacaggat ggagttcgcc agtcgagagc ttcagacaag cagactctgt 540
tgcccaatga ccagctctac cagcccctca aggatcgaga agatgaccag tacagccacc 600
ttcaaggaaa ccagttgagg aggaattgaa ctcaggactc agagtagtcc aggtgttctc 660
ctcctattca gttcccagaa tcaaagcaat gcattttgga aagctcctag cagagagact 720
ttcagcccta aatctagact caaggttccc agagatgaca aatggagaag aaaggccatc 780
agagcaaatt tgggggtttc tcaaataaaa taaaaataaa aacaaatact gtgtttcaga 840
agcgccacct attggggaaa attgtaaaag aaaaatgaaa agatcaaata accccctgga 900
tttgaatata attttttgtg ttgtaatttt tatttcgttt ttgtataggt tataattcac 960
atggctcaaa tattcagtga aagctctccc tccaccgcca tcccctgcta cccagtgacc 1020
ctgttgccct cttcagagac aaattagttt ctcttttttt tttttttttt tttttttttg 1080
agacagtctg gctctgtcac ccaggctgaa atgcagtggc accatctcgg ctcactgcaa 1140
cctctgcctc ctgggttcaa gcgattctcc tgcctcagcc tcccgggcag ctgggattac 1200
aggcacacac taccacacct ggctaatttt tgtattttta gtagagacag ggttttgctc 1260
tgttggccaa gctggtctcg aactcctgac ctcaagtgat ccgcccgcct c 1311
<210> 10
<211> 771
<212> DNA
<213> Homo sapiens
<400> 10
agagaagcag acatcttcta gttcctcccc cactctcctc tttccggtac ctgtgagtca 60
gctaggggag ggcagctctc acccaggctg atagttcggt gacctggctt tatctactgg 120
atgagttccg ctgggagatg gaacatagca cgtttctctc tggcctggta ctggctaccc 180
ttctctcgca agtgagcccc ttcaagatac ctatagagga acttgaggac agagtgtttg 240
tgaattgcaa taccagcatc acatgggtag agggaacggt gggaacactg ctctcagaca 300
ttacaagact ggacctggga aaacgcatcc tggacccacg aggaatatat aggtgtaatg 360
ggacagatat atacaaggac aaagaatcta ccgtgcaagt tcattatcga atgtgccaga 420
gctgtgtgga gctggatcca gccaccgtgg ctggcatcat tgtcactgat gtcattgcca 480
ctctgctcct tgctttggga gtcttctgct ttgctggaca tgagactgga aggctgtctg 540
gggctgccga cacacaagct ctgttgagga atgaccaggt ctatcagccc ctccgagatc 600
gagatgatgc tcagtacagc caccttggag gaaactgggc tcggaacaag tgaacctgag 660
actggtggct tctagaagca gccattacca actgtacctt cccttcttgc tcagccaata 720
aatatatcct ctttcactca gaaaaaaaaa aaaaaaaaaa aaaaaaaaaa a 771
<210> 11
<211> 1534
<212> DNA
<213> Homo sapiens
<400> 11
tattgtcaga gtcctcttgt ttggccttct aggaaggctg tgggacccag ctttcttcaa 60
ccagtccagg tggaggcctc tgccttgaac gtttccaagt gaggtaaaac ccgcaggccc 120
agaggcctct ctacttcctg tgtggggttc agaaaccctc ctcccctccc agcctcaggt 180
gcctgcttca gaaaatgaag tagtaagtct gctggcctcc gccatcttag taaagtaaca 240
gtcccatgaa acaaagatgc agtcgggcac tcactggaga gttctgggcc tctgcctctt 300
atcagttggc gtttgggggc aagatggtaa tgaagaaatg ggtggtatta cacagacacc 360
atataaagtc tccatctctg gaaccacagt aatattgaca tgccctcagt atcctggatc 420
tgaaatacta tggcaacaca atgataaaaa cataggcggt gatgaggatg ataaaaacat 480
aggcagtgat gaggatcacc tgtcactgaa ggaattttca gaattggagc aaagtggtta 540
ttatgtctgc taccccagag gaagcaaacc agaagatgcg aacttttatc tctacctgag 600
ggcaagagtg tgtgagaact gcatggagat ggatgtgatg tcggtggcca caattgtcat 660
agtggacatc tgcatcactg ggggcttgct gctgctggtt tactactgga gcaagaatag 720
aaaggccaag gccaagcctg tgacacgagg agcgggtgct ggcggcaggc aaaggggaca 780
aaacaaggag aggccaccac ctgttcccaa cccagactat gagcccatcc ggaaaggcca 840
gcgggacctg tattctggcc tgaatcagag acgcatctga ccctctggag aacactgcct 900
cccgctggcc caggtctcct ctccagtccc cctgcgactc cctgtttcct gggctagtct 960
tggaccccac gagagagaat cgttcctcag cctcatggtg aactcgcgcc ctccagcctg 1020
atcccccgct ccctcctccc tgccttctct gctggtaccc agtcctaaaa tattgctgct 1080
tcctcttcct ttgaagcatc atcagtagtc acaccctcac agctggcctg ccctcttgcc 1140
aggatattta tttgtgctat tcactccctt ccctttggat gtaacttctc cgttcagttc 1200
cctccttttc ttgcatgtaa gttgtccccc atcccaaagt attccatcta cttttctatc 1260
gccgtcccct tttgcagccc tctctgggga tggactgggt aaatgttgac agaggccctg 1320
ccccgttcac agatcctggc cctgagccag ccctgtgctc ctccctcccc caacactccc 1380
taccaacccc ctaatcccct actccctcca ccccccctcc actgtaggcc actggatggt 1440
catttgcatc tccgtaaatg tgctctgctc ctcagctgag agagaaaaaa ataaactgta 1500
tttggctgca agaaaaaaaa aaaaaaaaaa aaaa 1534
<210> 12
<211> 182
<212> PRT
<213> Homo sapiens
<400> 12
Met Glu Gln Gly Lys Gly Leu Ala Val Leu Ile Leu Ala Ile Ile Leu
1 5 10 15
Leu Gln Gly Thr Leu Ala Gln Ser Ile Lys Gly Asn His Leu Val Lys
20 25 30
Val Tyr Asp Tyr Gln Glu Asp Gly Ser Val Leu Leu Thr Cys Asp Ala
35 40 45
Glu Ala Lys Asn Ile Thr Trp Phe Lys Asp Gly Lys Met Ile Gly Phe
50 55 60
Leu Thr Glu Asp Lys Lys Lys Trp Asn Leu Gly Ser Asn Ala Lys Asp
65 70 75 80
Pro Arg Gly Met Tyr Gln Cys Lys Gly Ser Gln Asn Lys Ser Lys Pro
85 90 95
Leu Gln Val Tyr Tyr Arg Met Cys Gln Asn Cys Ile Glu Leu Asn Ala
100 105 110
Ala Thr Ile Ser Gly Phe Leu Phe Ala Glu Ile Val Ser Ile Phe Val
115 120 125
Leu Ala Val Gly Val Tyr Phe Ile Ala Gly Gln Asp Gly Val Arg Gln
130 135 140
Ser Arg Ala Ser Asp Lys Gln Thr Leu Leu Pro Asn Gln Leu Tyr
145 150 155 160
Gln Pro Leu Lys Asp Arg Glu Asp Asp Gln Tyr Ser His Leu Gln Gly
165 170 175
Asn Gln Leu Arg Arg Asn
180
<210> 13
<211> 171
<212> PRT
<213> Homo sapiens
<400> 13
Met Glu His Ser Thr Phe Leu Ser Gly Leu Val Leu Ala Thr Leu Leu
1 5 10 15
Ser Gln Val Ser Pro Phe Lys Ile Pro Ile Glu Glu Leu Glu Asp Arg
20 25 30
Val Phe Val Asn Cys Asn Thr Ser Ile Thr Trp Val Glu Gly Thr Val
35 40 45
Gly Thr Leu Leu Ser Asp Ile Thr Arg Leu Asp Leu Gly Lys Arg Ile
50 55 60
Leu Asp Pro Arg Gly Ile Tyr Arg Cys Asn Gly Thr Asp Ile Tyr Lys
65 70 75 80
Asp Lys Glu Ser Thr Val Gln Val His Tyr Arg Met Cys Gln Ser Cys
85 90 95
Val Glu Leu Asp Pro Ala Thr Val Ala Gly Ile Val Val Thr Asp Val
100 105 110
Ile Ala Thr Leu Leu Lea Ala Leu Gly Val Phe Cys Phe Ala Gly His
115 120 125
Glu Thr Gly Arg Leu Ser Gly Ala Ala Asp Thr Gln Ala Leu Leu Arg
130 135 140
Asn Asp Gln Val Tyr Gln Pro Leu Arg Asp Arg Asp Asp Ala Gln Tyr
145 150 155 160
Ser His Leu Gly Gly Asn Trp Ala Arg Asn Lys
165 170
<210> 14
<211> 207
<212> PRT
<213> Homo sapiens
<400> 14
Met Gln Ser Gly Thr His Trp Arg Val Leu Gly Leu Cys Leu Leu Ser
1 5 10 15
Val Gly Val Trp Gly Gln Asp Gly Asn Glu Glu Met Gly Gly Ile Thr
20 25 30
Gln Thr Pro Tyr Lys Val Ser Ile Ser Gly Thr Thr Val Ile Leu Thr
35 40 45
Cys Pro Gln Tyr Pro Gly Ser Glu Ile Leu Trp Gln His Asn Asp Lys
50 55 60
Asn Ile Gly Gly Asp Glu Asp Asp Lys Asn Ile Gly Ser Asp Glu Asp
65 70 75 80
His Leu Ser Leu Lys Glu Phe Ser Glu Leu Glu Gln Ser Gly Tyr Tyr
85 90 95
Val Cys Tyr Pro Arg Gly Ser Lys Pro Glu Asp Ala Asn Phe Tyr Leu
100 105 110
Tyr Leu Arg Ala Arg Val Cys Glu Asn Cys Met Glu Met Asp Val Met
115 120 125
Ser Val Ala Thr Ile Val Ile Val Asp Ile Cys Ile Thr Gly Gly Leu
130 135 140
Leu Leu Leu Val Tyr Tyr Trp Ser Lys Asn Arg Lys Ala Lys Ala Lys
145 150 155 160
Pro Val Thr Arg Gly Ala Gly Ala Gly Gly Arg Gln Arg Gly Gln Asn
165 170 175
Lys Glu Arg Pro Pro Pro Val Pro Asn Pro Asp Tyr Glu Pro Ile Arg
180 185 190
Lys Gly Gln Arg Asp Leu Tyr Ser Gly Leu Asn Gln Arg Arg Ile
195 200 205
<210> 15
<211> 4
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 15
Gly Gly Gly Ser
One
<210> 16
<211> 4
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 16
Ser Gly Gly Gly
One
<210> 17
<211> 5
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 17
Gly Gly Gly Gly Ser
1 5
<210> 18
<211> 5
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 18
Ser Gly Gly Gly Gly
1 5
<210> 19
<211> 6
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 19
Gly Gly Gly Gly Gly Ser
1 5
<210> 20
<211> 6
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 20
Ser Gly Gly Gly Gly Gly
1 5
<210> 21
<211> 7
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 21
Gly Gly Gly Gly Gly Gly Ser
1 5
<210> 22
<211> 7
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 22
Ser Gly Gly Gly
1 5
<210> 23
<211> 330
<212> PRT
<213> Homo sapiens
<400> 23
Ala Ser Thr Lys Gly Pro Ser Val Phe Pro Leu Ala Pro Ser Ser Lys
1 5 10 15
Ser Thr Ser Gly Gly Thr Ala Ala Leu Gly Cys Leu Val Lys Asp Tyr
20 25 30
Phe Pro Glu Pro Val Thr Val Ser Trp Asn Ser Gly Ala Leu Thr Ser
35 40 45
Gly Val His Thr Phe Pro Ala Val Leu Gln Ser Ser Gly Leu Tyr Ser
50 55 60
Leu Ser Ser Val Val Thr Val Ser Ser Ser Leu Gly Thr Gln Thr
65 70 75 80
Tyr Ile Cys Asn Val Asn His Lys Pro Ser Asn Thr Lys Val Asp Lys
85 90 95
Lys Val Glu Pro Lys Ser Cys Asp Lys Thr His Thr Cys Pro Pro Cys
100 105 110
Pro Ala Pro Glu Leu Leu Gly Gly Pro Ser Val Phe Leu Phe Pro Pro
115 120 125
Lys Pro Lys Asp Thr Leu Met Ile Ser Arg Thr Pro Glu Val Thr Cys
130 135 140
Val Val Val Asp Val Ser His Glu Asp Pro Glu Val Lys Phe Asn Trp
145 150 155 160
Tyr Val Asp Gly Val Glu Val His Asn Ala Lys Thr Lys Pro Arg Glu
165 170 175
Glu Gln Tyr Asn Ser Thr Tyr Arg Val Val Ser Val Leu Thr Val Leu
180 185 190
His Gln Asp Trp Leu Asn Gly Lys Glu Tyr Lys Cys Lys Val Ser Asn
195 200 205
Lys Ala Leu Pro Ala Pro Ile Glu Lys Thr Ile Ser Lys Ala Lys Gly
210 215 220
Gln Pro Arg Glu Pro Gln Val Tyr Thr Leu Pro Pro Ser Arg Asp Glu
225 230 235 240
Leu Thr Lys Asn Gln Val Ser Leu Thr Cys Leu Val Lys Gly Phe Tyr
245 250 255
Pro Ser Asp Ile Ala Val Glu Trp Glu Ser Asn Gly Gln Pro Glu Asn
260 265 270
Asn Tyr Lys Thr Thr Pro Pro Val Leu Asp Ser Asp Gly Ser Phe Phe
275 280 285
Leu Tyr Ser Lys Leu Thr Val Asp Lys Ser Arg Trp Gln Gln Gly Asn
290 295 300
Val Phe Ser Cys Ser Val Met His Glu Ala Leu His Asn His Tyr Thr
305 310 315 320
Gln Lys Ser Leu Ser Leu Ser Pro Gly Lys
325 330
<210> 24
<211> 326
<212> PRT
<213> Homo sapiens
<400> 24
Ala Ser Thr Lys Gly Pro Ser Val Phe Pro Leu Ala Pro Cys Ser Arg
1 5 10 15
Ser Thr Ser Glu Ser Thr Ala Ala Leu Gly Cys Leu Val Lys Asp Tyr
20 25 30
Phe Pro Glu Pro Val Thr Val Ser Trp Asn Ser Gly Ala Leu Thr Ser
35 40 45
Gly Val His Thr Phe Pro Ala Val Leu Gln Ser Ser Gly Leu Tyr Ser
50 55 60
Leu Ser Ser Val Val Thr Val Ser Ser Asn Phe Gly Thr Gln Thr
65 70 75 80
Tyr Thr Cys Asn Val Asp His Lys Pro Ser Asn Thr Lys Val Asp Lys
85 90 95
Thr Val Glu Arg Lys Cys Cys Val Glu Cys Pro Pro Cys Pro Ala Pro
100 105 110
Pro Val Ala Gly Pro Ser Val Phe Leu Phe Pro Pro Lys Pro Lys Asp
115 120 125
Thr Leu Met Ile Ser Arg Thr Pro Glu Val Thr Cys Val Val Val Asp
130 135 140
Val Ser His Glu Asp Pro Glu Val Gln Phe Asn Trp Tyr Val Asp Gly
145 150 155 160
Val Glu Val His Asn Ala Lys Thr Lys Pro Arg Glu Glu Gln Phe Asn
165 170 175
Ser Thr Phe Arg Val Val Ser Val Leu Thr Val Val His Gln Asp Trp
180 185 190
Leu Asn Gly Lys Glu Tyr Lys Cys Lys Val Ser Asn Lys Gly Leu Pro
195 200 205
Ala Pro Ile Glu Lys Thr Ile Ser Lys Thr Lys Gly Gln Pro Arg Glu
210 215 220
Pro Gln Val Tyr Thr Leu Pro Pro Ser Arg Glu Glu Met Thr Lys Asn
225 230 235 240
Gln Val Ser Leu Thr Cys Leu Val Lys Gly Phe Tyr Pro Ser Asp Ile
245 250 255
Ala Val Glu Trp Glu Ser Asn Gly Gln Pro Glu Asn Asn Tyr Lys Thr
260 265 270
Thr Pro Pro Met Leu Asp Ser Asp Gly Ser Phe Phe Leu Tyr Ser Lys
275 280 285
Leu Thr Val Asp Lys Ser Arg Trp Gln Gln Gly Asn Val Phe Ser Cys
290 295 300
Ser Val Met His Glu Ala Leu His Asn His Tyr Thr Gln Lys Ser Leu
305 310 315 320
Ser Leu Ser Pro Gly Lys
325
<210> 25
<211> 377
<212> PRT
<213> Homo sapiens
<400> 25
Ala Ser Thr Lys Gly Pro Ser Val Phe Pro Leu Ala Pro Cys Ser Arg
1 5 10 15
Ser Thr Ser Gly Gly Thr Ala Ala Leu Gly Cys Leu Val Lys Asp Tyr
20 25 30
Phe Pro Glu Pro Val Thr Val Ser Trp Asn Ser Gly Ala Leu Thr Ser
35 40 45
Gly Val His Thr Phe Pro Ala Val Leu Gln Ser Ser Gly Leu Tyr Ser
50 55 60
Leu Ser Ser Val Val Thr Val Ser Ser Ser Leu Gly Thr Gln Thr
65 70 75 80
Tyr Thr Cys Asn Val Asn His Lys Pro Ser Asn Thr Lys Val Asp Lys
85 90 95
Arg Val Glu Leu Lys Thr Pro Leu Gly Asp Thr Thr His Thr Cys Pro
100 105 110
Arg Cys Pro Glu Pro Lys Ser Cys Asp Thr Pro Pro Pro Cys Pro Arg
115 120 125
Cys Pro Glu Pro Lys Ser Cys Asp Thr Pro Pro Pro Cys Pro Arg Cys
130 135 140
Pro Glu Pro Lys Ser Cys Asp Thr Pro Pro Pro Cys Pro Arg Cys Pro
145 150 155 160
Ala Pro Glu Leu Leu Gly Gly Pro Ser Val Phe Leu Phe Pro Pro Lys
165 170 175
Pro Lys Asp Thr Leu Met Ile Ser Arg Thr Pro Glu Val Thr Cys Val
180 185 190
Val Val Asp Val Ser His Glu Asp Pro Glu Val Gln Phe Lys Trp Tyr
195 200 205
Val Asp Gly Val Glu Val His Asn Ala Lys Thr Lys Pro Arg Glu Glu
210 215 220
Gln Tyr Asn Ser Thr Phe Arg Val Val Ser Val Leu Thr Val Leu His
225 230 235 240
Gln Asp Trp Leu Asn Gly Lys Glu Tyr Lys Cys Lys Val Ser Asn Lys
245 250 255
Ala Leu Pro Ala Pro Ile Glu Lys Thr Ile Ser Lys Thr Lys Gly Gln
260 265 270
Pro Arg Glu Pro Gln Val Tyr Thr Leu Pro Pro Ser Arg Glu Glu Met
275 280 285
Thr Lys Asn Gln Val Ser Leu Thr Cys Leu Val Lys Gly Phe Tyr Pro
290 295 300
Ser Asp Ile Ala Val Glu Trp Glu Ser Ser Gly Gln Pro Glu Asn Asn
305 310 315 320
Tyr Asn Thr Thr Pro Pro Met Leu Asp Ser Asp Gly Ser Phe Phe Leu
325 330 335
Tyr Ser Lys Leu Thr Val Asp Lys Ser Arg Trp Gln Gln Gly Asn Ile
340 345 350
Phe Ser Cys Ser Val Met His Glu Ala Leu His Asn Arg Phe Thr Gln
355 360 365
Lys Ser Leu Ser Leu Ser Pro Gly Lys
370 375
<210> 26
<211> 327
<212> PRT
<213> Homo sapiens
<400> 26
Ala Ser Thr Lys Gly Pro Ser Val Phe Pro Leu Ala Pro Cys Ser Arg
1 5 10 15
Ser Thr Ser Glu Ser Thr Ala Ala Leu Gly Cys Leu Val Lys Asp Tyr
20 25 30
Phe Pro Glu Pro Val Thr Val Ser Trp Asn Ser Gly Ala Leu Thr Ser
35 40 45
Gly Val His Thr Phe Pro Ala Val Leu Gln Ser Ser Gly Leu Tyr Ser
50 55 60
Leu Ser Ser Val Val Thr Val Ser Ser Ser Leu Gly Thr Lys Thr
65 70 75 80
Tyr Thr Cys Asn Val Asp His Lys Pro Ser Asn Thr Lys Val Asp Lys
85 90 95
Arg Val Glu Ser Lys Tyr Gly Pro Pro Cys Pro Ser Cys Pro Ala Pro
100 105 110
Glu Phe Leu Gly Gly Pro Ser Val Phe Leu Phe Pro Pro Lys Pro Lys
115 120 125
Asp Thr Leu Met Ile Ser Arg Thr Pro Glu Val Thr Cys Val Val Val
130 135 140
Asp Val Ser Gln Glu Asp Pro Glu Val Gln Phe Asn Trp Tyr Val Asp
145 150 155 160
Gly Val Glu Val His Asn Ala Lys Thr Lys Pro Arg Glu Glu Gln Phe
165 170 175
Asn Ser Thr Tyr Arg Val Val Ser Val Leu Thr Val Leu His Gln Asp
180 185 190
Trp Leu Asn Gly Lys Glu Tyr Lys Cys Lys Val Ser Asn Lys Gly Leu
195 200 205
Pro Ser Ser Ile Glu Lys Thr Ile Ser Lys Ala Lys Gly Gln Pro Arg
210 215 220
Glu Pro Gln Val Tyr Thr Leu Pro Pro Ser Gln Glu Glu Met Thr Lys
225 230 235 240
Asn Gln Val Ser Leu Thr Cys Leu Val Lys Gly Phe Tyr Pro Ser Asp
245 250 255
Ile Ala Val Glu Trp Glu Ser Asn Gly Gln Pro Glu Asn Asn Tyr Lys
260 265 270
Thr Pro Pro Val Leu Asp Ser Asp Gly Ser Phe Phe Leu Tyr Ser
275 280 285
Arg Leu Thr Val Asp Lys Ser Arg Trp Gln Glu Gly Asn Val Phe Ser
290 295 300
Cys Ser Val Met His Glu Ala Leu His Asn His Tyr Thr Gln Lys Ser
305 310 315 320
Leu Ser Leu Ser Leu Gly Lys
325
<210> 27
<211> 2268
<212> DNA
<213> Homo sapiens
<400> 27
aatatcttgc atgttacaga tttcactgct cccaccagct tggagacaac atgtggttct 60
tgacaactct gctcctttgg gttccagttg atgggcaagt ggacaccaca aaggcagtga 120
tcactttgca gcctccatgg gtcagcgtgt tccaagagga aaccgtaacc ttgcactgtg 180
aggtgctcca tctgcctggg agcagctcta cacagtggtt tctcaatggc acagccactc 240
agacctcgac ccccagctac agaatcacct ctgccagtgt caatgacagt ggtgaataca 300
ggtgccagag aggtctctca gggcgaagtg accccataca gctggaaatc cacagaggct 360
ggctactact gcaggtctcc agcagagtct tcacggaagg agaacctctg gccttgaggt 420
gtcatgcgtg gaaggataag ctggtgtaca atgtgcttta ctatcgaaat ggcaaagcct 480
ttaagttttt ccactggaat tctaacctca ccattctgaa aaccaacata agtcacaatg 540
gcacctacca ttgctcaggc atgggaaagc atcgctacac atcagcagga atatctgtca 600
ctgtgaaaga gctatttcca gctccagtgc tgaatgcatc tgtgacatcc ccactcctgg 660
aggggaatct ggtcaccctg agctgtgaaa caaagttgct cttgcagagg cctggtttgc 720
agctttactt ctccttctac atgggagag agaccctgcg aggcaggaac acatcctctg 780
aataccaaat actaactgct agaagagaag actctgggtt atactggtgc gaggctgcca 840
cagaggatgg aaatgtcctt aagcgcagcc ctgagttgga gcttcaagtg cttggcctcc 900
agttaccaac tcctgtctgg tttcatgtcc ttttctatct ggcagtggga ataatgtttt 960
tagtgaacac tgttctctgg gtgacaatac gtaaagaact gaaaagaaag aaaaagtggg 1020
atttagaaat ctctttggat tctggtcatg agaagaaggt aatttccagc cttcaagaag 1080
acagacattt agaagaagag ctgaaatgtc aggaacaaaa agaagaacag ctgcaggaag 1140
gggtgcaccg gaaggagccc cagggggcca cgtagcagcg gctcagtggg tggccatcga 1200
tctggaccgt cccctgccca cttgctcccc gtgagcactg cgtacaaaca tccaaaagtt 1260
caacaacacc agaactgtgt gtctcatggt atgtaactct taaagcaaat aaatgaactg 1320
acttcaactg ggatacattt ggaaatgtgg tcatcaaaga tgacttgaaa tgaggcctac 1380
tctaaagaat tcttgaaaaa cttacaagtc aagcctagcc tgataatcct attacatagt 1440
ttgaaaaata gtattttatt tctcagaaca aggtaaaaag gtgagtgggt gcatatgtac 1500
agaagattaa gacagagaaa cagacagaaa gagacacaca cacagccagg agtgggtaga 1560
tttcagggag acaagaggaga atagtataga caataaggaa ggaaatagta cttacaaatg 1620
actcctaagg gactgtgaga ctgagagggc tcacgcctct gtgttcagga tacttagttc 1680
atggcttttc tctttgactt tactaaaaga gaatgtctcc atacgcgttc taggcataca 1740
agggggtaac tcatgatgag aaatggatgt gttattcttg ccctctcttt tgaggctctc 1800
tcataacccc tctatttcta gagacaacaa aaatgctgcc agtcctaggc ccctgccctg 1860
taggaaggca gaatgtaact gttctgtttg tttaacgatt aagtccaaat ctccaagtgc 1920
ggcactgcaa agagacgctt caagtgggga gaagcggcga taccatagag tccagatctt 1980
gcctccagag atttgcttta ccttcctgat tttctggtta ctaattagct tcaggatacg 2040
ctgctctcat acttgggctg tagtttggag acaaaatatt ttcctgccac tgtgtaacat 2100
agctgaggta aaaactgaac tatgtaaatg actctactaa aagtttaggg aaaaaaaaca 2160
ggaggagtat gacacaaaaa aaaaaaaaaa aaaaaaaaaa aaaaaaaaaa aaaaaaaaaa 2220
aaaaaaaaaa aaaaaaaaaa aaaaaaaaaa aaaaaaaaaa aaaaaaaa 2268
<210> 28
<211> 374
<212> PRT
<213> Homo sapiens
<400> 28
Met Trp Phe Leu Thr Thr Leu Leu Leu Trp Val Pro Val Asp Gly Gln
1 5 10 15
Val Asp Thr Thr Lys Ala Val Ile Thr Leu Gln Pro Pro Trp Val Ser
20 25 30
Val Phe Gln Glu Glu Thr Val Thr Leu His Cys Glu Val Leu His Leu
35 40 45
Pro Gly Ser Ser Ser Thr Gln Trp Phe Leu Asn Gly Thr Ala Thr Gln
50 55 60
Thr Ser Thr Pro Ser Tyr Arg Ile Thr Ser Ala Ser Val Asn Ser Ser
65 70 75 80
Gly Glu Tyr Arg Cys Gln Arg Gly Leu Ser Gly Arg Ser Asp Pro Ile
85 90 95
Gln Leu Glu Ile His Arg Gly Trp Leu Leu Leu Gln Val Ser Ser Arg
100 105 110
Val Phe Thr Glu Gly Glu Pro Leu Ala Leu Arg Cys His Ala Trp Lys
115 120 125
Asp Lys Leu Val Tyr Asn Val Leu Tyr Tyr Arg Asn Gly Lys Ala Phe
130 135 140
Lys Phe Phe His Trp Asn Ser Asn Leu Thr Ile Leu Lys Thr Asn Ile
145 150 155 160
Ser His Asn Gly Thr Tyr His Cys Ser Gly Met Gly Lys His Arg Tyr
165 170 175
Thr Ser Ala Gly Ile Ser Val Thr Val Lys Glu Leu Phe Pro Ala Pro
180 185 190
Val Leu Asn Ala Ser Val Thr Ser Pro Leu Leu Glu Gly Asn Leu Val
195 200 205
Thr Leu Ser Cys Glu Thr Lys Leu Leu Leu Gln Arg Pro Gly Leu Gln
210 215 220
Leu Tyr Phe Ser Phe Tyr Met Gly Ser Lys Thr Leu Arg Gly Arg Asn
225 230 235 240
Thr Ser Ser Glu Tyr Gln Ile Leu Thr Ala Arg Arg Glu Asp Ser Gly
245 250 255
Leu Tyr Trp Cys Glu Ala Ala Thr Glu Asp Gly Asn Val Leu Lys Arg
260 265 270
Ser Pro Glu Leu Glu Leu Gln Val Leu Gly Leu Gln Leu Pro Thr Pro
275 280 285
Val Trp Phe His Val Leu Phe Tyr Leu Ala Val Gly Ile Met Phe Leu
290 295 300
Val Asn Thr Val Leu Trp Val Thr Ile Arg Lys Glu Leu Lys Arg Lys
305 310 315 320
Lys Lys Trp Asp Leu Glu Ile Ser Leu Asp Ser Gly His Glu Lys Lys
325 330 335
Val Ile Ser Ser Leu Gln Glu Asp Arg His Leu Glu Glu Glu Leu Lys
340 345 350
Cys Gln Glu Gln Lys Glu Glu Glu Leu Gln Glu Gly Val His Arg Lys
355 360 365
Glu Pro Gln Gly Ala Thr
370
<210> 29
<211> 1396
<212> DNA
<213> Homo sapiens
<400> 29
gggatgacta tggagaccca aatgtctcag aatgtatgtc ccagaaacct gtggctgctt 60
caaccattga cagttttgct gctgctggct tctgcagaca gtcaagctgc tcccccaaag 120
gctgtgctga aacttgagcc cccgtggatc aacgtgctcc aggaggactc tgtgactctg 180
acatgccagg gggctcgcag ccctgagagc gactccattc agtggttcca caatgggaat 240
ctcattccca cccacacgca gcccagctac aggttcaagg ccaacaacaa tgacagcggg 300
gagtacacgt gccagactgg ccagaccagc ctcagcgacc ctgtgcatct gactgtgctt 360
tccgaatggc tggtgctcca gacccctcac ctggagttcc aggagggaga aaccatcatg 420
ctgaggtgcc acagctggaa ggacaagcct ctggtcaagg tcacattctt ccagaatgga 480
aaatcccaga aattctccca tttggatccc accttctcca tcccacaagc aaaccacagt 540
cacagtggtg attaccactg cacaggaaac ataggctaca cgctgttctc atccaagcct 600
gtgaccatca ctgtccaagt gcccagcatg ggcagctctt caccaatggg ggtcattgtg 660
gctgtggtca ttgcgactgc tgtagcagcc attgttgctg ctgtagtggc cttgatctac 720
tgcaggaaaa agcggatttc agccaattcc actgatcctg tgaaggctgc ccaatttgag 780
ccacctggac gtcaaatgat tgccatcaga aagagacaac ttgaagaaac caacaatgac 840
tatgaaacag ctgacggcgg ctacatgact ctgaacccca gggcacctac tgacgatgat 900
aaaaacatct acctgactct tcctcccaac gaccatgtca acagtaataa ctaaagagta 960
acgttatgcc atgtggtcat actctcagct tgctgagtgg atgacaaaaa gaggggaatt 1020
gttaaaggaa aatttaaatg gagactggaa aaatcctgag caaacaaaac cacctggccc 1080
ttagaaatag ctttaacttt gcttaaacta caaacacaag caaaacttca cggggtcata 1140
ctacatacaa gcataagcaa aacttaactt ggatcatttc tggtaaatgc ttatgttaga 1200
aataagacaa ccccagccaa tcacaagcag cctactaaca tataattagg tgactaggga 1260
ctttctaaga agatacctac ccccaaaaaa caattatgta attgaaaacc aaccgattgc 1320
ctttattttg cttccacatt ttcccaataa atacttgcct gtgactaaaa aaaaaaaaaa 1380
aaaaaaaaaa aaaaaa 1396
<210> 30
<211> 316
<212> PRT
<213> Homo sapiens
<400> 30
Met Thr Met Glu Thr Gln Met Ser Gln Asn Val Cys Pro Arg Asn Leu
1 5 10 15
Trp Leu Leu Gln Pro Leu Thr Val Leu Leu Leu Leu Ala Ser Ala Asp
20 25 30
Ser Gln Ala Ala Pro Pro Lys Ala Val Leu Lys Leu Glu Pro Pro Trp
35 40 45
Ile Asn Val Leu Gln Glu Asp Ser Val Thr Leu Thr Cys Gln Gly Ala
50 55 60
Arg Ser Pro Glu Ser Asp Ser Ile Gln Trp Phe His Asn Gly Asn Leu
65 70 75 80
Ile Pro Thr His Thr Gln Pro Ser Tyr Arg Phe Lys Ala Asn Asn Asn
85 90 95
Asp Ser Gly Glu Tyr Thr Cys Gln Thr Gly Gln Thr Ser Leu Ser Asp
100 105 110
Pro Val His Leu Thr Val Leu Ser Glu Trp Leu Val Leu Gln Thr Pro
115 120 125
His Leu Glu Phe Gln Glu Gly Glu Thr Ile Met Leu Arg Cys His Ser
130 135 140
Trp Lys Asp Lys Pro Leu Val Lys Val Thr Phe Phe Gln Asn Gly Lys
145 150 155 160
Ser Gln Lys Phe Ser His Leu Asp Pro Thr Phe Ser Ile Pro Gln Ala
165 170 175
Asn His Ser His Ser Gly Asp Tyr His Cys Thr Gly Asn Ile Gly Tyr
180 185 190
Thr Leu Phe Ser Ser Lys Pro Val Thr Ile Thr Val Gln Val Ser Ser
195 200 205
Met Gly Ser Ser Ser Pro Met Gly Val Ile Val Ala Val Val Ile Ala
210 215 220
Thr Ala Val Ala Ala Ile Val Ala Ala Val Ala Leu Ile Tyr Cys
225 230 235 240
Arg Lys Lys Arg Ile Ser Ala Asn Ser Thr Asp Pro Val Lys Ala Ala
245 250 255
Gln Phe Glu Pro Pro Gly Arg Gln Met Ile Ala Ile Arg Lys Arg Gln
260 265 270
Leu Glu Glu Thr Asn Asn Asp Tyr Glu Thr Ala Asp Gly Gly Tyr Met
275 280 285
Thr Leu Asn Pro Arg Ala Pro Thr Asp Asp Asp Lys Asn Ile Tyr Leu
290 295 300
Thr Leu Pro Pro Asn Asp His Val Asn Ser Asn Asn
305 310 315
<210> 31
<211> 1497
<212> DNA
<213> Homo sapiens
<400> 31
tgtgactgct gtgctctggg cgccagctcg ctccagggag tgatgggaat cctgtcattc 60
ttacctgtcc ttgccactga gagtgactgg gctgactgca agtcccccca gccttggggt 120
catatgcttc tgtggacagc tgtgctattc ctggctcctg ttgctgggac acctgcagct 180
cccccaaagg ctgtgctgaa actcgagccc cagtggatca acgtgctcca ggaggactct 240
gtgactctga catgccgggg gactcacagc cctgagagcg actccattca gtggttccac 300
aatgggaatc tcattcccac ccacacgcag cccagctaca ggttcaaggc caacaacaat 360
gacagcgggg agtacacgtg ccagactggc cagaccagcc tcagcgaccc tgtgcatctg 420
actgtgcttt ctgagtggct ggtgctccag acccctcacc tggagttcca ggagggagaa 480
accatcgtgc tgaggtgcca cagctggaag gacaagcctc tggtcaaggt cacattcttc 540
cagaatggaa aatccaagaa attttcccgt tcggatccca acttctccat cccacaagca 600
aaccacagtc acagtggtga ttaccactgc acaggaaaca taggctacac gctgtactca 660
tccaagcctg tgaccatcac tgtccaagct cccagctctt caccgatggg gatcattgtg 720
gctgtggtca ctgggattgc tgtagcggcc attgttgctg ctgtagtggc cttgatctac 780
tgcaggaaaa agcggatttc agccaatccc actaatcctg atgaggctga caaagttggg 840
gctgagaaca caatcaccta ttcacttctc atgcacccgg atgctctgga agagcctgat 900
gaccagaacc gtatttagtc tccattgtct tgcattggga tttgagaaga aaatcagaga 960
gggaagatct ggtatttcct ggcctaaatt ccccttgggg aggacaggga gatgctgcag 1020
ttccaaaaga gaaggtttct tccagagtca tctacctgag tcctgaagct ccctgtcctg 1080
aaagccacag acaatatggt cccaaataac cgactgcacc ttctgtgctt cagctcttct 1140
tgacatcaag gctcttccgt tccacatcca cacagccaat ccaattaatc aaaccactgt 1200
tattaacaga taatagcaac ttgggaaatg cttatgttac aggttacgtg agaacaatca 1260
tgtaaatcta tatgatttca gaaatgttaa aatagactaa cctctaccag cacattaaaa 1320
gtgattgttt ctgggtgata aaattattga tgatttttat tttctttatt tttctataaa 1380
gatcatatat tacttttata ataaaacatt ataaaaacaa aaaaaaaaaa aaaaaaaaaa 1440
aaaaaaaaaa aaaaaaaaaa aaaaaaaaaa aaaaaaaaaa aaaaaaaaaa aaaaaaa 1497
<210> 32
<211> 291
<212> PRT
<213> Homo sapiens
<400> 32
Met Gly Ile Leu Ser Phe Leu Pro Val Leu Ala Thr Glu Ser Asp Trp
1 5 10 15
Ala Asp Cys Lys Ser Pro Gln Pro Trp Gly His Met Leu Leu Trp Thr
20 25 30
Ala Val Leu Phe Leu Ala Pro Ala Gla Thr Pro Ala Ala Pro Pro
35 40 45
Lys Ala Val Leu Lys Leu Glu Pro Gln Trp Ile Asn Val Leu Gln Glu
50 55 60
Asp Ser Val Thr Leu Thr Cys Arg Gly Thr His Ser Pro Glu Ser Asp
65 70 75 80
Ser Ile Gln Trp Phe His Asn Gly Asn Leu Ile Pro Thr His Thr Gln
85 90 95
Pro Ser Tyr Arg Phe Lys Ala Asn Asn Asn Asp Ser Gly Glu Tyr Thr
100 105 110
Cys Gln Thr Gly Gln Thr Ser Leu Ser Asp Pro Val His Leu Thr Val
115 120 125
Leu Ser Glu Trp Leu Val Leu Gln Thr Pro His Leu Glu Phe Gln Glu
130 135 140
Gly Glu Thr Ile Val Leu Arg Cys His Ser Trp Lys Asp Lys Pro Leu
145 150 155 160
Val Lys Val Thr Phe Phe Gln Asn Gly Lys Ser Lys Lys Phe Ser Arg
165 170 175
Ser Asp Pro Asn Phe Ser Ile Pro Gln Ala Asn His Ser His Ser Gly
180 185 190
Asp Tyr His Cys Thr Gly Asn Ile Gly Tyr Thr Leu Tyr Ser Ser Lys
195 200 205
Pro Val Thr Ile Thr Val Gln Ala Pro Ser Ser Ser Pro Met Gly Ile
210 215 220
Ile Val Ala Val Val Thr Gly Ile Ala Val Ala Ile Val Ala Ala
225 230 235 240
Val Val Ala Leu Ile Tyr Cys Arg Lys Lys Arg Ile Ser Ala Asn Pro
245 250 255
Thr Asn Pro Asp Glu Ala Asp Lys Val Gly Ala Glu Asn Thr Ile Thr
260 265 270
Tyr Ser Leu Leu Met His Pro Asp Ala Leu Glu Glu Pro Asp Asp Gln
275 280 285
Asn Arg Ile
290
<210> 33
<211> 2137
<212> DNA
<213> Homo sapiens
<400> 33
cttgtccact ccagtgtggc atcatgtggc agctgctcct cccaactgct ctgctacttc 60
tagtttcagc tggcatgcgg actgaagatc tcccaaaggc tgtggtgttc ctggagcctc 120
aatggtacag ggtgctcgag aaggacagtg tgactctgaa gtgccaggga gcctactccc 180
ctgaggacaa ttccacacag tggtttcaca atgagagcct catctcaagc caggcctcga 240
gctacttcat tgacgctgcc acagttgacg acagtggaga gtacaggtgc cagacaaacc 300
tctccaccct cagtgacccg gtgcagctag aagtccatat cggctggctg ttgctccagg 360
cccctcggtg ggtgttcaag gaggaagacc ctattcacct gaggtgtcac agctggaaga 420
acactgctct gcataaggtc acatatttac agaatggcaa aggcaggaag tattttcatc 480
ataattctga cttctacatt ccaaaagcca cactcaaaga cagcggctcc tacttctgca 540
gggggcttgt tgggagtaaa aatgtgtctt cagagactgt gaacatcacc atcactcaag 600
gtttgtcagt gtcaaccatc tcatcattct ttccacctgg gtaccaagtc tctttctgct 660
tggtgatggt actccttttt gcagtggaca caggactata tttctctgtg aagacaaaca 720
ttcgaagctc aacaagagac tggaaggacc ataaatttaa atggagaaag gaccctcaag 780
acaaatgacc cccatcccat gggggtaata agagcagtag cagcagcatc tctgaacatt 840
tctctggatt tgcaacccca tcatcctcag gcctctctac aagcagcagg aaacatagaa 900
ctcagagcca gatcccttat ccaactctcg acttttcctt ggtctccagt ggaagggaaa 960
agcccatgat cttcaagcag ggaagcccca gtgagtagct gcattcctag aaattgaagt 1020
ttcagagcta cacaaacact ttttctgtcc caaccgttcc ctcacagcaa agcaacaata 1080
caggctaggg atggtaatcc tttaaacata caaaaattgc tcgtgttata aattacccag 1140
tttagagggg aaaaaaaaac aattattcct aaataaatgg ataagtagaa ttaatggttg 1200
aggcaggacc atacagagtg tgggaactgc tggggatcta gggaattcag tgggaccaat 1260
gaaagcatgg ctgagaaata gcaggtagtc caggatagtc taagggaggt gttcccatct 1320
gagcccagag ataagggtgt cttcctagaa cattagccgt agtggaatta acaggaaatc 1380
atgagggtga cgtagaattg agtcttccag gggactctat cagaactgga ccatctccaa 1440
gtatataacg atgagtcctc ttaatgctag gagtagaaaa tggtcctagg aaggggactg 1500
aggattgcgg tggggggtgg ggtggaaaag aaagtacaga acaaaccctg tgtcactgtc 1560
ccaagttgct aagtgaacag aactatctca gcatcagaat gagaaagcct gagaagaaag 1620
aaccaaccac aagcacacag gaaggaaagc gcaggaggtg aaaatgcttt cttggccagg 1680
gtagtaagaa ttagaggtta atgcagggac tgtaaaacca ccttttctgc ttcaatatct 1740
aattcctgtg tagctttgtt cattgcattt attaaacaaa tgttgtataa ccaatactaa 1800
atgtactact gagcttcgct gagttaagtt atgaaacttt caaatccttc atcatgtcag 1860
ttccaatgag gtggggatgg agaagacaat tgttgcttat gaaagaaagc tttagctgtc 1920
tctgttttgt aagctttaag cgcaacattt cttggttcca ataaagcatt ttacaagatc 1980
ttgcatgcta ctcttagata gaagatggga aaaccatggt aataaaatat gaatgataaa 2040
aaaaaaaaaa aaaaaaaaaa aaaaaaaaaa aaaaaaaaaa aaaaaaaaaa aaaaaaaaaa 2100
aaaaaaaaaa aaaaaaaaaa aaaaaaaaaa aaaaaaa 2137
<210> 34
<211> 254
<212> PRT
<213> Homo sapiens
<400> 34
Met Trp Gln Leu Leu Leu Pro Thr Ala Leu Leu Leu Leu Val Ser Ala
1 5 10 15
Gly Met Arg Thr Glu Asp Leu Pro Lys Ala Val Val Phe Leu Glu Pro
20 25 30
Gln Trp Tyr Arg Val Leu Glu Lys Asp Ser Val Thr Leu Lys Cys Gln
35 40 45
Gly Ala Tyr Ser Pro Glu Asp Asn Ser Thr Gln Trp Phe His Asn Glu
50 55 60
Ser Leu Ile Ser Ser Gln Ala Ser Ser Tyr Phe Ile Asp Ala Ala Thr
65 70 75 80
Val Asp Asp Ser Gly Glu Tyr Arg Cys Gln Thr Asn Leu Ser Thr Leu
85 90 95
Ser Asp Pro Val Gln Leu Glu Val His Ile Gly Trp Leu Leu Leu Gln
100 105 110
Ala Pro Arg Trp Val Phe Lys Glu Glu Asp Pro Ile His Leu Arg Cys
115 120 125
His Ser Trp Lys Asn Thr Ala Leu His Lys Val Thr Tyr Leu Gln Asn
130 135 140
Gly Lys Gly Arg Lys Tyr Phe His His Asn Ser Asp Phe Tyr Ile Pro
145 150 155 160
Lys Ala Thr Leu Lys Asp Ser Gly Ser Tyr Phe Cys Arg Gly Leu Val
165 170 175
Gly Ser Lys Asn Val Ser Ser Glu Thr Val Asn Ile Thr Ile Thr Gln
180 185 190
Gly Leu Ser Val Ser Thr Ile Ser Ser Phe Phe Pro Pro Gly Tyr Gln
195 200 205
Val Ser Phe Cys Leu Val Met Val Leu Leu Phe Ala Val Asp Thr Gly
210 215 220
Leu Tyr Phe Ser Val Lys Thr Asn Ile Arg Ser Ser Thr Arg Asp Trp
225 230 235 240
Lys Asp His Lys Phe Lys Trp Arg Lys Asp Pro Gln Asp Lys
245 250
<210> 35
<211> 820
<212> DNA
<213> Homo sapiens
<400> 35
cactccagtg tggcatcatg tggcagctgc tcctcccaac tgctctgcta cttctagttt 60
cagctggcat gcggactgaa gatctcccaa aggctgtggt gttcctggag cctcaatggt 120
acagcgtgct tgagaaggac agtgtgactc tgaagtgcca gggagcctac tcccctgagg 180
acaattccac acagtggttt cacaatgaga gcctcatctc aagccaggcc tcgagctact 240
tcattgacgc tgccacagtc aacgacagtg gagagtacag gtgccagaca aacctctcca 300
ccctcagtga cccggtgcag ctagaagtcc atatcggctg gctgttgctc caggcccctc 360
ggtgggtgtt caaggaggaa gaccctattc acctgaggtg tcacagctgg aagaacactg 420
ctctgcataa ggtcacatat ttacagaatg gcaaagacag gaagtatttt catcataatt 480
ctgacttcca cattccaaaa gccacactca aagatagcgg ctcctacttc tgcagggggc 540
ttgttgggag taaaaatgtg tcttcagaga ctgtgaacat caccatcact caaggtttgg 600
cagtgtcaac catctcatca ttctctccac ctgggtacca agtctctttc tgcttggtga 660
tggtactcct ttttgcagtg gacacaggac tatatttctc tgtgaagaca aacatttgaa 720
gctcaacaag agactggaag gaccataaac ttaaatggag aaaggaccct caagacaaat 780
gacccccatc ccatgggagt aataagagca gtggcagcag 820
<210> 36
<211> 233
<212> PRT
<213> Homo sapiens
<400> 36
Met Trp Gln Leu Leu Leu Pro Thr Ala Leu Leu Leu Leu Val Ser Ala
1 5 10 15
Gly Met Arg Thr Glu Asp Leu Pro Lys Ala Val Val Phe Leu Glu Pro
20 25 30
Gln Trp Tyr Ser Val Leu Glu Lys Asp Ser Val Thr Leu Lys Cys Gln
35 40 45
Gly Ala Tyr Ser Pro Glu Asp Asn Ser Thr Gln Trp Phe His Asn Glu
50 55 60
Ser Leu Ile Ser Ser Gln Ala Ser Ser Tyr Phe Ile Asp Ala Ala Thr
65 70 75 80
Val Asn Asp Ser Gly Glu Tyr Arg Cys Gln Thr Asn Leu Ser Thr Leu
85 90 95
Ser Asp Pro Val Gln Leu Glu Val His Ile Gly Trp Leu Leu Leu Gln
100 105 110
Ala Pro Arg Trp Val Phe Lys Glu Glu Asp Pro Ile His Leu Arg Cys
115 120 125
His Ser Trp Lys Asn Thr Ala Leu His Lys Val Thr Tyr Leu Gln Asn
130 135 140
Gly Lys Asp Arg Lys Tyr Phe His His Asn Ser Asp Phe His Ile Pro
145 150 155 160
Lys Ala Thr Leu Lys Asp Ser Gly Ser Tyr Phe Cys Arg Gly Leu Val
165 170 175
Gly Ser Lys Asn Val Ser Ser Glu Thr Val Asn Ile Thr Ile Thr Gln
180 185 190
Gly Leu Ala Val Ser Thr Ile Ser Ser Phe Ser Pro Pro Gly Tyr Gln
195 200 205
Val Ser Phe Cys Leu Val Met Val Leu Leu Phe Ala Val Asp Thr Gly
210 215 220
Leu Tyr Phe Ser Val Lys Thr Asn Ile
225 230
<210> 37
<211> 330
<212> PRT
<213> Homo sapiens
<400> 37
Ala Ser Thr Lys Gly Pro Ser Val Phe Pro Leu Ala Pro Ser Ser Lys
1 5 10 15
Ser Thr Ser Gly Gly Thr Ala Ala Leu Gly Cys Leu Val Lys Asp Tyr
20 25 30
Phe Pro Glu Pro Val Thr Val Ser Trp Asn Ser Gly Ala Leu Thr Ser
35 40 45
Gly Val His Thr Phe Pro Ala Val Leu Gln Ser Ser Gly Leu Tyr Ser
50 55 60
Leu Ser Ser Val Val Thr Val Ser Ser Ser Leu Gly Thr Gln Thr
65 70 75 80
Tyr Ile Cys Asn Val Asn His Lys Pro Ser Asn Thr Lys Val Asp Lys
85 90 95
Lys Val Glu Pro Lys Ser Cys Asp Lys Thr His Thr Cys Pro Pro Cys
100 105 110
Pro Ala Pro Glu Leu Leu Gly Gly Pro Ser Val Phe Leu Phe Pro Pro
115 120 125
Lys Pro Lys Asp Thr Leu Met Ile Ser Arg Thr Pro Glu Val Thr Cys
130 135 140
Val Val Val Asp Val Ser His Glu Asp Pro Glu Val Lys Phe Asn Trp
145 150 155 160
Tyr Val Asp Gly Val Glu Val His Asn Ala Lys Thr Lys Pro Arg Glu
165 170 175
Glu Gln Tyr Asn Ser Thr Tyr Arg Val Val Ser Val Leu Thr Val Leu
180 185 190
His Gln Asp Trp Leu Asn Gly Lys Glu Tyr Lys Cys Lys Val Ser Asn
195 200 205
Lys Ala Leu Pro Ala Pro Ile Glu Lys Thr Ile Ser Lys Ala Lys Gly
210 215 220
Gln Pro Arg Glu Pro Gln Val Tyr Thr Leu Pro Pro Ser Arg Asp Glu
225 230 235 240
Leu Thr Lys Asn Gln Val Ser Leu Thr Cys Leu Val Lys Gly Phe Tyr
245 250 255
Pro Ser Asp Ile Ala Val Glu Trp Glu Ser Asn Gly Gln Pro Glu Asn
260 265 270
Asn Tyr Lys Thr Thr Pro Pro Val Leu Asp Ser Asp Gly Ser Phe Phe
275 280 285
Leu Tyr Ser Lys Leu Thr Val Asp Lys Ser Arg Trp Gln Gln Gly Asn
290 295 300
Val Phe Ser Cys Ser Val Met His Glu Ala Leu His Asn His Tyr Thr
305 310 315 320
Gln Lys Ser Leu Ser Leu Ser Pro Gly Lys
325 330
<210> 38
<211> 326
<212> PRT
<213> Homo sapiens
<400> 38
Ala Ser Thr Lys Gly Pro Ser Val Phe Pro Leu Ala Pro Cys Ser Arg
1 5 10 15
Ser Thr Ser Glu Ser Thr Ala Ala Leu Gly Cys Leu Val Lys Asp Tyr
20 25 30
Phe Pro Glu Pro Val Thr Val Ser Trp Asn Ser Gly Ala Leu Thr Ser
35 40 45
Gly Val His Thr Phe Pro Ala Val Leu Gln Ser Ser Gly Leu Tyr Ser
50 55 60
Leu Ser Ser Val Val Thr Val Ser Ser Asn Phe Gly Thr Gln Thr
65 70 75 80
Tyr Thr Cys Asn Val Asp His Lys Pro Ser Asn Thr Lys Val Asp Lys
85 90 95
Thr Val Glu Arg Lys Cys Cys Val Glu Cys Pro Pro Cys Pro Ala Pro
100 105 110
Pro Val Ala Gly Pro Ser Val Phe Leu Phe Pro Pro Lys Pro Lys Asp
115 120 125
Thr Leu Met Ile Ser Arg Thr Pro Glu Val Thr Cys Val Val Val Asp
130 135 140
Val Ser His Glu Asp Pro Glu Val Gln Phe Asn Trp Tyr Val Asp Gly
145 150 155 160
Val Glu Val His Asn Ala Lys Thr Lys Pro Arg Glu Glu Gln Phe Asn
165 170 175
Ser Thr Phe Arg Val Val Ser Val Leu Thr Val Val His Gln Asp Trp
180 185 190
Leu Asn Gly Lys Glu Tyr Lys Cys Lys Val Ser Asn Lys Gly Leu Pro
195 200 205
Ala Pro Ile Glu Lys Thr Ile Ser Lys Thr Lys Gly Gln Pro Arg Glu
210 215 220
Pro Gln Val Tyr Thr Leu Pro Pro Ser Arg Glu Glu Met Thr Lys Asn
225 230 235 240
Gln Val Ser Leu Thr Cys Leu Val Lys Gly Phe Tyr Pro Ser Asp Ile
245 250 255
Ala Val Glu Trp Glu Ser Asn Gly Gln Pro Glu Asn Asn Tyr Lys Thr
260 265 270
Thr Pro Pro Met Leu Asp Ser Asp Gly Ser Phe Phe Leu Tyr Ser Lys
275 280 285
Leu Thr Val Asp Lys Ser Arg Trp Gln Gln Gly Asn Val Phe Ser Cys
290 295 300
Ser Val Met His Glu Ala Leu His Asn His Tyr Thr Gln Lys Ser Leu
305 310 315 320
Ser Leu Ser Pro Gly Lys
325
<210> 39
<211> 327
<212> PRT
<213> Homo sapiens
<400> 39
Ala Ser Thr Lys Gly Pro Ser Val Phe Pro Leu Ala Pro Cys Ser Arg
1 5 10 15
Ser Thr Ser Glu Ser Thr Ala Ala Leu Gly Cys Leu Val Lys Asp Tyr
20 25 30
Phe Pro Glu Pro Val Thr Val Ser Trp Asn Ser Gly Ala Leu Thr Ser
35 40 45
Gly Val His Thr Phe Pro Ala Val Leu Gln Ser Ser Gly Leu Tyr Ser
50 55 60
Leu Ser Ser Val Val Thr Val Ser Ser Ser Leu Gly Thr Lys Thr
65 70 75 80
Tyr Thr Cys Asn Val Asp His Lys Pro Ser Asn Thr Lys Val Asp Lys
85 90 95
Arg Val Glu Ser Lys Tyr Gly Pro Pro Cys Pro Ser Cys Pro Ala Pro
100 105 110
Glu Phe Leu Gly Gly Pro Ser Val Phe Leu Phe Pro Pro Lys Pro Lys
115 120 125
Asp Thr Leu Met Ile Ser Arg Thr Pro Glu Val Thr Cys Val Val Val
130 135 140
Asp Val Ser Gln Glu Asp Pro Glu Val Gln Phe Asn Trp Tyr Val Asp
145 150 155 160
Gly Val Glu Val His Asn Ala Lys Thr Lys Pro Arg Glu Glu Gln Phe
165 170 175
Asn Ser Thr Tyr Arg Val Val Ser Val Leu Thr Val Leu His Gln Asp
180 185 190
Trp Leu Asn Gly Lys Glu Tyr Lys Cys Lys Val Ser Asn Lys Gly Leu
195 200 205
Pro Ser Ser Ile Glu Lys Thr Ile Ser Lys Ala Lys Gly Gln Pro Arg
210 215 220
Glu Pro Gln Val Tyr Thr Leu Pro Pro Ser Gln Glu Glu Met Thr Lys
225 230 235 240
Asn Gln Val Ser Leu Thr Cys Leu Val Lys Gly Phe Tyr Pro Ser Asp
245 250 255
Ile Ala Val Glu Trp Glu Ser Asn Gly Gln Pro Glu Asn Asn Tyr Lys
260 265 270
Thr Pro Pro Val Leu Asp Ser Asp Gly Ser Phe Phe Leu Tyr Ser
275 280 285
Arg Leu Thr Val Asp Lys Ser Arg Trp Gln Glu Gly Asn Val Phe Ser
290 295 300
Cys Ser Val Met His Glu Ala Leu His Asn His Tyr Thr Gln Lys Ser
305 310 315 320
Leu Ser Leu Ser Leu Gly Lys
325
<210> 40
<211> 115
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 40
Gln Val Gln Leu Val Gln Ser Gly Ala Glu Val Lys Lys Pro Gly Ala
1 5 10 15
Ser Val Lys Val Ser Cys Lys Ala Ser Gly Tyr Thr Phe Thr Asp Tyr
20 25 30
Glu Met His Trp Ile Arg Gln Pro Pro Gly Gln Gly Leu Glu Trp Ile
35 40 45
Gly Ala Ile Asp Pro Lys Thr Gly Asp Thr Ala Tyr Ser Gln Lys Phe
50 55 60
Lys Gly Arg Val Thr Leu Thr Ala Asp Lys Ser Thr Ser Thr Ala Tyr
65 70 75 80
Met Glu Leu Ser Ser Leu Thr Ser Glu Asp Thr Ala Val Tyr Tyr Cys
85 90 95
Thr Arg Phe Tyr Ser Tyr Thr Tyr Trp Gly Gln Gly Thr Leu Val Thr
100 105 110
Val Ser Ser
115
<210> 41
<211> 112
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 41
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Leu Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Ser Gln Asn
85 90 95
Thr His Val Pro Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 42
<211> 122
<212> PRT
<213> Rattus norvegicus
<400> 42
Glu Val Gln Leu Val Glu Thr Gly Gly Ser Leu Val Gln Pro Gly Lys
1 5 10 15
Ser Leu Lys Leu Thr Cys Ala Thr Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ser Pro Glu Lys Gln Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Ala Lys Ser Asn Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Asp Asp Ser Lys Ser Asn
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Glu Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Gly Ala Tyr Tyr Gly Val Asp Ala Trp
100 105 110
Gly Gln Gly Thr Ser Val Thr Val Ser Ser
115 120
<210> 43
<211> 112
<212> PRT
<213> Rattus norvegicus
<400> 43
Asp Val Met Met Thr Gln Thr Pro Val Ser Ser Val Val Ser Leu Gly
1 5 10 15
Gly Gln Val Ser Ile Ser Cys Arg Ser Ser Gln Ser Leu Val His Asn
20 25 30
Asn Gly Asn Thr Tyr Val Ser Trp Tyr Ile Gln Lys Ser Ser Gln Ser
35 40 45
Pro Gln Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Ile Ser
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Pro Asp Asp Leu Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Asp Pro Tyr Thr Phe Gly Ala Gly Thr Lys Leu Glu Leu Lys
100 105 110
<210> 44
<211> 328
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 44
Ala Ser Thr Lys Gly Pro Ser Val Phe Pro Leu Ala Pro Ser Ser Lys
1 5 10 15
Ser Thr Ser Gly Gly Thr Ala Ala Leu Gly Cys Leu Val Lys Asp Tyr
20 25 30
Phe Pro Glu Pro Val Thr Val Ser Trp Asn Ser Gly Ala Leu Thr Ser
35 40 45
Gly Val His Thr Phe Pro Ala Val Leu Gln Ser Ser Gly Leu Tyr Ser
50 55 60
Leu Ser Ser Val Val Thr Val Ser Ser Ser Leu Gly Thr Gln Thr
65 70 75 80
Tyr Ile Cys Asn Val Asn His Lys Pro Ser Asn Thr Lys Val Asp Lys
85 90 95
Lys Val Glu Pro Lys Ser Cys Asp Lys Thr His Thr Cys Pro Pro Cys
100 105 110
Pro Ala Pro Glu Leu Leu Gly Gly Pro Ser Val Phe Leu Phe Pro Pro
115 120 125
Lys Pro Lys Asp Thr Leu Met Ile Ser Arg Thr Pro Glu Val Thr Cys
130 135 140
Val Val Val Asp Val Ser His Glu Asp Pro Glu Val Lys Phe Asn Trp
145 150 155 160
Tyr Val Asp Gly Val Glu Val His Asn Ala Lys Thr Lys Pro Arg Glu
165 170 175
Glu Gln Tyr Asn Ser Thr Tyr Arg Val Val Ser Val Leu Thr Val Leu
180 185 190
His Gln Asp Trp Leu Asn Gly Lys Glu Tyr Lys Cys Lys Val Ser Asn
195 200 205
Lys Ala Leu Pro Ala Pro Ile Glu Lys Thr Ile Ser Lys Ala Lys Gly
210 215 220
Gln Pro Arg Glu Pro Gln Val Tyr Thr Leu Pro Pro Ser Arg Cys Glu
225 230 235 240
Leu Thr Lys Asn Gln Val Ser Leu Ser Cys Ala Val Lys Gly Phe Tyr
245 250 255
Pro Ser Asp Ile Ala Val Glu Trp Glu Ser Asn Gly Gln Pro Glu Asn
260 265 270
Asn Tyr Lys Thr Thr Pro Pro Val Leu Asp Ser Asp Gly Ser Phe Phe
275 280 285
Leu Val Ser Lys Leu Thr Val Asp Lys Ser Arg Trp Gln Gln Gly Asn
290 295 300
Val Phe Ser Cys Ser Val Met His Glu Ala Leu His Asn His Tyr Thr
305 310 315 320
Gln Lys Ser Leu Ser Leu Ser Pro
325
<210> 45
<211> 338
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 45
Ser Ser Ala Ser Thr Lys Gly Pro Ser Val Phe Pro Leu Ala Pro Ser
1 5 10 15
Ser Lys Ser Thr Ser Gly Gly Thr Ala Ala Leu Gly Cys Leu Val Lys
20 25 30
Asp Tyr Phe Pro Glu Pro Val Thr Val Ser Trp Asn Ser Gly Ala Leu
35 40 45
Thr Ser Gly Val His Thr Phe Pro Ala Val Leu Gln Ser Ser Gly Leu
50 55 60
Tyr Ser Leu Ser Ser Val Val Thr Val Ser Ser Ser Leu Gly Thr
65 70 75 80
Gln Thr Tyr Ile Cys Asn Val Asn His Lys Pro Ser Asn Thr Lys Val
85 90 95
Asp Lys Lys Val Glu Pro Lys Ser Cys Asp Lys Thr His Thr Cys Pro
100 105 110
Pro Cys Pro Ala Pro Glu Ala Ala Gly Gly Pro Ser Val Phe Leu Phe
115 120 125
Pro Pro Lys Pro Lys Asp Thr Leu Met Ile Ser Arg Thr Pro Glu Val
130 135 140
Thr Cys Val Val Val Asp Val Ser His Glu Asp Pro Glu Val Lys Phe
145 150 155 160
Asn Trp Tyr Val Asp Gly Val Glu Val His Asn Ala Lys Thr Lys Pro
165 170 175
Arg Glu Glu Gln Tyr Ala Ser Thr Tyr Arg Val Val Ser Val Leu Thr
180 185 190
Val Leu His Gln Asp Trp Leu Asn Gly Lys Glu Tyr Lys Cys Lys Val
195 200 205
Ser Asn Lys Ala Leu Pro Ala Pro Ile Glu Lys Thr Ile Ser Lys Ala
210 215 220
Lys Gly Gln Pro Arg Glu Pro Gln Val Cys Thr Leu Pro Pro Ser Arg
225 230 235 240
Asp Glu Leu Thr Lys Asn Gln Val Ser Leu Trp Cys Leu Val Lys Gly
245 250 255
Phe Tyr Pro Ser Asp Ile Ala Val Glu Trp Glu Ser Asn Gly Gln Pro
260 265 270
Glu Asn Asn Tyr Lys Thr Thr Pro Pro Val Leu Asp Ser Asp Gly Ser
275 280 285
Phe Phe Leu Tyr Ser Lys Leu Thr Val Asp Lys Ser Arg Trp Gln Gln
290 295 300
Gly Asn Val Phe Ser Cys Ser Val Met His Glu Ala Leu His Asn His
305 310 315 320
Tyr Thr Gln Lys Ser Leu Ser Leu Ser Pro His His His His His
325 330 335
His His
<210> 46
<211> 336
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 46
Ala Ser Thr Lys Gly Pro Ser Val Phe Pro Leu Ala Pro Ser Ser Lys
1 5 10 15
Ser Thr Ser Gly Gly Thr Ala Ala Leu Gly Cys Leu Val Lys Asp Tyr
20 25 30
Phe Pro Glu Pro Val Thr Val Ser Trp Asn Ser Gly Ala Leu Thr Ser
35 40 45
Gly Val His Thr Phe Pro Ala Val Leu Gln Ser Ser Gly Leu Tyr Ser
50 55 60
Leu Ser Ser Val Val Thr Val Ser Ser Ser Leu Gly Thr Gln Thr
65 70 75 80
Tyr Ile Cys Asn Val Asn His Lys Pro Ser Asn Thr Lys Val Asp Lys
85 90 95
Lys Val Glu Pro Lys Ser Cys Asp Lys Thr His Thr Cys Pro Pro Cys
100 105 110
Pro Ala Pro Glu Ala Gly Gly Pro Ser Val Phe Leu Phe Pro Pro
115 120 125
Lys Pro Lys Asp Thr Leu Met Ile Ser Arg Thr Pro Glu Val Thr Cys
130 135 140
Val Val Val Asp Val Ser His Glu Asp Pro Glu Val Lys Phe Asn Trp
145 150 155 160
Tyr Val Asp Gly Val Glu Val His Asn Ala Lys Thr Lys Pro Arg Glu
165 170 175
Glu Gln Tyr Ala Ser Thr Tyr Arg Val Val Ser Val Leu Thr Val Leu
180 185 190
His Gln Asp Trp Leu Asn Gly Lys Glu Tyr Lys Cys Lys Val Ser Asn
195 200 205
Lys Ala Leu Pro Ala Pro Ile Glu Lys Thr Ile Ser Lys Ala Lys Gly
210 215 220
Gln Pro Arg Glu Pro Gln Val Tyr Thr Leu Pro Pro Ser Arg Cys Glu
225 230 235 240
Leu Thr Lys Asn Gln Val Ser Leu Ser Cys Ala Val Lys Gly Phe Tyr
245 250 255
Pro Ser Asp Ile Ala Val Glu Trp Glu Ser Asn Gly Gln Pro Glu Asn
260 265 270
Asn Tyr Lys Thr Thr Pro Pro Val Leu Asp Ser Asp Gly Ser Phe Phe
275 280 285
Leu Val Ser Lys Leu Thr Val Asp Lys Ser Arg Trp Gln Gln Gly Asn
290 295 300
Val Phe Ser Cys Ser Val Met His Glu Ala Leu His Asn His Tyr Thr
305 310 315 320
Gln Lys Ser Leu Ser Leu Ser Pro Asp Tyr Lys Asp Asp Asp Asp Lys
325 330 335
<210> 47
<211> 450
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 47
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Leu Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Ser Gln Asn
85 90 95
Thr His Val Pro Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
Ser Ser Ala Ser Thr Lys Gly Pro Ser Val Phe Pro Leu Ala Pro Ser
115 120 125
Ser Lys Ser Thr Ser Gly Gly Thr Ala Ala Leu Gly Cys Leu Val Lys
130 135 140
Asp Tyr Phe Pro Glu Pro Val Thr Val Ser Trp Asn Ser Gly Ala Leu
145 150 155 160
Thr Ser Gly Val His Thr Phe Pro Ala Val Leu Gln Ser Ser Gly Leu
165 170 175
Tyr Ser Leu Ser Ser Val Val Thr Val Ser Ser Ser Leu Gly Thr
180 185 190
Gln Thr Tyr Ile Cys Asn Val Asn His Lys Pro Ser Asn Thr Lys Val
195 200 205
Asp Lys Lys Val Glu Pro Lys Ser Cys Asp Lys Thr His Thr Cys Pro
210 215 220
Pro Cys Pro Ala Pro Glu Ala Ala Gly Gly Pro Ser Val Phe Leu Phe
225 230 235 240
Pro Pro Lys Pro Lys Asp Thr Leu Met Ile Ser Arg Thr Pro Glu Val
245 250 255
Thr Cys Val Val Val Asp Val Ser His Glu Asp Pro Glu Val Lys Phe
260 265 270
Asn Trp Tyr Val Asp Gly Val Glu Val His Asn Ala Lys Thr Lys Pro
275 280 285
Arg Glu Glu Gln Tyr Ala Ser Thr Tyr Arg Val Val Ser Val Leu Thr
290 295 300
Val Leu His Gln Asp Trp Leu Asn Gly Lys Glu Tyr Lys Cys Lys Val
305 310 315 320
Ser Asn Lys Ala Leu Pro Ala Pro Ile Glu Lys Thr Ile Ser Lys Ala
325 330 335
Lys Gly Gln Pro Arg Glu Pro Gln Val Cys Thr Leu Pro Pro Ser Arg
340 345 350
Asp Glu Leu Thr Lys Asn Gln Val Ser Leu Trp Cys Leu Val Lys Gly
355 360 365
Phe Tyr Pro Ser Asp Ile Ala Val Glu Trp Glu Ser Asn Gly Gln Pro
370 375 380
Glu Asn Asn Tyr Lys Thr Thr Pro Pro Val Leu Asp Ser Asp Gly Ser
385 390 395 400
Phe Phe Leu Tyr Ser Lys Leu Thr Val Asp Lys Ser Arg Trp Gln Gln
405 410 415
Gly Asn Val Phe Ser Cys Ser Val Met His Glu Ala Leu His Asn His
420 425 430
Tyr Thr Gln Lys Ser Leu Ser Leu Ser Pro His His His His His
435 440 445
His His
450
<210> 48
<211> 222
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 48
Gln Val Gln Leu Val Gln Ser Gly Ala Glu Val Lys Lys Pro Gly Ala
1 5 10 15
Ser Val Lys Val Ser Cys Lys Ala Ser Gly Tyr Thr Phe Thr Asp Tyr
20 25 30
Glu Met His Trp Ile Arg Gln Pro Pro Gly Gln Gly Leu Glu Trp Ile
35 40 45
Gly Ala Ile Asp Pro Lys Thr Gly Asp Thr Ala Tyr Ser Gln Lys Phe
50 55 60
Lys Gly Arg Val Thr Leu Thr Ala Asp Lys Ser Thr Ser Thr Ala Tyr
65 70 75 80
Met Glu Leu Ser Ser Leu Thr Ser Glu Asp Thr Ala Val Tyr Tyr Cys
85 90 95
Thr Arg Phe Tyr Ser Tyr Thr Tyr Trp Gly Gln Gly Thr Leu Val Thr
100 105 110
Val Ser Ser Ala Ser Val Ala Ala Pro Ser Val Phe Ile Phe Pro Pro
115 120 125
Ser Asp Glu Gln Leu Lys Ser Gly Thr Ala Ser Val Val Cys Leu Leu
130 135 140
Asn Asn Phe Tyr Pro Arg Glu Ala Lys Val Gln Trp Lys Val Asp Asn
145 150 155 160
Ala Leu Gln Ser Gly Asn Ser Gln Glu Ser Val Thr Glu Gln Asp Ser
165 170 175
Lys Asp Ser Thr Tyr Ser Leu Ser Ser Thr Leu Thr Leu Ser Lys Ala
180 185 190
Asp Tyr Glu Lys His Lys Val Tyr Ala Cys Glu Val Thr His Gln Gly
195 200 205
Leu Ser Ser Pro Val Thr Lys Ser Phe Asn Arg Gly Glu Cys
210 215 220
<210> 49
<211> 458
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 49
Glu Val Gln Leu Val Glu Thr Gly Gly Ser Leu Val Gln Pro Gly Lys
1 5 10 15
Ser Leu Lys Leu Thr Cys Ala Thr Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ser Pro Glu Lys Gln Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Ala Lys Ser Asn Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Asp Asp Ser Lys Ser Asn
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Glu Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Gly Ala Tyr Tyr Gly Val Asp Ala Trp
100 105 110
Gly Gln Gly Thr Ser Val Thr Val Ser Ser Ala Ser Thr Lys Gly Pro
115 120 125
Ser Val Phe Pro Leu Ala Pro Ser Ser Lys Ser Thr Ser Gly Gly Thr
130 135 140
Ala Ala Leu Gly Cys Leu Val Lys Asp Tyr Phe Pro Glu Pro Val Thr
145 150 155 160
Val Ser Trp Asn Ser Gly Ala Leu Thr Ser Gly Val His Thr Phe Pro
165 170 175
Ala Val Leu Gln Ser Ser Gly Leu Tyr Ser Leu Ser Ser Val Val Thr
180 185 190
Val Ser Ser Ser Leu Gly Thr Gln Thr Tyr Ile Cys Asn Val Asn
195 200 205
His Lys Pro Ser Asn Thr Lys Val Asp Lys Lys Val Glu Pro Lys Ser
210 215 220
Cys Asp Lys Thr His Thr Cys Pro Pro Cys Pro Ala Pro Glu Ala Ala
225 230 235 240
Gly Gly Pro Ser Val Phe Leu Phe Pro Pro Lys Pro Lys Asp Thr Leu
245 250 255
Met Ile Ser Arg Thr Pro Glu Val Thr Cys Val Val Val Asp Val Ser
260 265 270
His Glu Asp Pro Glu Val Lys Phe Asn Trp Tyr Val Asp Gly Val Glu
275 280 285
Val His Asn Ala Lys Thr Lys Pro Arg Glu Glu Gln Tyr Ala Ser Thr
290 295 300
Tyr Arg Val Val Ser Val Leu Thr Val Leu His Gln Asp Trp Leu Asn
305 310 315 320
Gly Lys Glu Tyr Lys Cys Lys Val Ser Asn Lys Ala Leu Pro Ala Pro
325 330 335
Ile Glu Lys Thr Ile Ser Lys Ala Lys Gly Gln Pro Arg Glu Pro Gln
340 345 350
Val Tyr Thr Leu Pro Pro Ser Arg Cys Glu Leu Thr Lys Asn Gln Val
355 360 365
Ser Leu Ser Cys Ala Val Lys Gly Phe Tyr Ser Ser Asp Ile Ala Val
370 375 380
Glu Trp Glu Ser Asn Gly Gln Pro Glu Asn Asn Tyr Lys Thr Thr Pro
385 390 395 400
Pro Val Leu Asp Ser Asp Gly Ser Phe Phe Leu Val Ser Lys Leu Thr
405 410 415
Val Asp Lys Ser Arg Trp Gln Gln Gly Asn Val Phe Ser Cys Ser Val
420 425 430
Met His Glu Ala Leu His Asn His Tyr Thr Gln Lys Ser Leu Ser Leu
435 440 445
Ser Pro Asp Tyr Lys Asp Asp Asp Asp Lys
450 455
<210> 50
<211> 219
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 50
Asp Val Met Met Thr Gln Thr Pro Val Ser Ser Val Val Ser Leu Gly
1 5 10 15
Gly Gln Val Ser Ile Ser Cys Arg Ser Ser Gln Ser Leu Val His Asn
20 25 30
Asn Gly Asn Thr Tyr Val Ser Trp Tyr Ile Gln Lys Ser Ser Gln Ser
35 40 45
Pro Gln Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Ile Ser
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Pro Asp Asp Leu Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Asp Pro Tyr Thr Phe Gly Ala Gly Thr Lys Leu Glu Leu Lys
100 105 110
Arg Thr Val Ala Ala Pro Ser Val Phe Ile Phe Pro Pro Ser Asp Glu
115 120 125
Gln Leu Lys Ser Gly Thr Ala Ser Val Val Cys Leu Leu Asn Asn Phe
130 135 140
Tyr Pro Arg Glu Ala Lys Val Gln Trp Lys Val Asp Asn Ala Leu Gln
145 150 155 160
Ser Gly Asn Ser Gln Glu Ser Val Thr Glu Gln Asp Ser Lys Asp Ser
165 170 175
Thr Tyr Ser Leu Ser Ser Thr Leu Thr Leu Ser Lys Ala Asp Tyr Glu
180 185 190
Lys His Lys Val Tyr Ala Cys Glu Val Thr His Gln Gly Leu Ser Ser
195 200 205
Pro Val Thr Lys Ser Phe Asn Arg Gly Glu Cys
210 215
<210> 51
<211> 122
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 51
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Val Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Ala Lys Ser Asn Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Asp Asp Ser Lys Asn Ser
65 70 75 80
Leu Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Ala Arg Val His Tyr Gly Ala Tyr Tyr Gly Val Asp Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 52
<211> 122
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 52
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Val Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Ala Lys Ser Asn Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Asp Asp Ser Lys Asn Ser
65 70 75 80
Leu Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Gly Ala Tyr Tyr Gly Val Asp Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 53
<211> 112
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 53
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Leu Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
<210> 54
<211> 448
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 54
Gln Val Gln Leu Val Gln Ser Gly Ala Glu Val Lys Lys Pro Gly Ala
1 5 10 15
Ser Val Lys Val Ser Cys Lys Ala Ser Gly Tyr Thr Phe Thr Asp Tyr
20 25 30
Glu Met His Trp Ile Arg Gln Pro Pro Gly Gln Gly Leu Glu Trp Ile
35 40 45
Gly Ala Ile Asp Pro Lys Thr Gly Asp Thr Ala Tyr Ser Gln Lys Phe
50 55 60
Lys Gly Arg Val Thr Leu Thr Ala Asp Lys Ser Thr Ser Thr Ala Tyr
65 70 75 80
Met Glu Leu Ser Ser Leu Thr Ser Glu Asp Thr Ala Val Tyr Tyr Cys
85 90 95
Thr Arg Phe Tyr Ser Tyr Thr Tyr Trp Gly Gln Gly Thr Leu Val Thr
100 105 110
Val Ser Ser Ala Ser Thr Lys Gly Pro Ser Val Phe Pro Leu Ala Pro
115 120 125
Cys Ser Arg Ser Thr Ser Glu Ser Thr Ala Ala Leu Gly Cys Leu Val
130 135 140
Lys Asp Tyr Phe Pro Glu Pro Val Thr Val Ser Trp Asn Ser Gly Ala
145 150 155 160
Leu Thr Ser Gly Val His Thr Phe Pro Ala Val Leu Gln Ser Ser Gly
165 170 175
Leu Tyr Ser Leu Ser Ser Val Val Thr Val Ser Ser Ser Leu Gly
180 185 190
Thr Lys Thr Tyr Thr Cys Asn Val Asp His Lys Pro Ser Asn Thr Lys
195 200 205
Val Asp Lys Arg Val Glu Ser Lys Tyr Gly Pro Pro Cys Pro Pro Cys
210 215 220
Pro Ala Pro Glu Phe Arg Gly Gly Pro Lys Val Phe Leu Phe Pro Pro
225 230 235 240
Lys Pro Lys Asp Thr Leu Met Ile Ser Arg Thr Pro Glu Val Thr Cys
245 250 255
Val Val Val Asp Val Ser Gln Glu Asp Pro Glu Val Gln Phe Asn Trp
260 265 270
Tyr Val Asp Gly Val Glu Val His Asn Ala Lys Thr Lys Pro Arg Glu
275 280 285
Glu Gln Phe Ala Ser Thr Tyr Arg Val Val Ser Val Leu Thr Val Leu
290 295 300
His Gln Asp Trp Leu Asn Gly Lys Glu Tyr Lys Cys Lys Val Ser Asn
305 310 315 320
Lys Gly Leu Pro Ser Ser Ile Glu Lys Thr Ile Ser Lys Ala Lys Gly
325 330 335
Gln Pro Arg Glu Pro Gln Val Tyr Thr Leu Pro Pro Ser Gln Lys Glu
340 345 350
Met Thr Lys Asn Gln Val Ser Leu Thr Cys Leu Val Lys Gly Phe Tyr
355 360 365
Pro Ser Asp Ile Ala Val Glu Trp Glu Ser Asn Gly Gln Pro Glu Asn
370 375 380
Asn Tyr Lys Thr Thr Pro Pro Val Leu Asp Ser Asp Gly Ser Phe Phe
385 390 395 400
Leu Tyr Ser Arg Leu Thr Val Asp Lys Ser Arg Trp Gln Glu Gly Asn
405 410 415
Val Phe Ser Cys Ser Val Met His Glu Ala Leu His Asn Arg Tyr Thr
420 425 430
Gln Lys Ser Leu Ser Leu Ser Leu His His His His His His His His
435 440 445
<210> 55
<211> 455
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 55
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Val Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Ala Lys Ser Asn Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Asp Asp Ser Lys Asn Ser
65 70 75 80
Leu Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Gly Ala Tyr Tyr Gly Val Asp Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser Ala Ser Thr Lys Gly Pro
115 120 125
Ser Val Phe Pro Leu Ala Pro Cys Ser Arg Ser Thr Ser Glu Ser Thr
130 135 140
Ala Ala Leu Gly Cys Leu Val Lys Asp Tyr Phe Pro Glu Pro Val Thr
145 150 155 160
Val Ser Trp Asn Ser Gly Ala Leu Thr Ser Gly Val His Thr Phe Pro
165 170 175
Ala Val Leu Gln Ser Ser Gly Leu Tyr Ser Leu Ser Ser Val Val Thr
180 185 190
Val Ser Ser Ser Leu Gly Thr Lys Thr Tyr Thr Cys Asn Val Asp
195 200 205
His Lys Pro Ser Asn Thr Lys Val Asp Lys Arg Val Glu Ser Lys Tyr
210 215 220
Gly Pro Pro Cys Pro Pro Cys Pro Ala Pro Glu Phe Arg Gly Gly Pro
225 230 235 240
Lys Val Phe Leu Phe Pro Pro Lys Pro Lys Asp Thr Leu Met Ile Ser
245 250 255
Arg Thr Pro Glu Val Thr Cys Val Val Val Asp Val Ser Gln Glu Asp
260 265 270
Pro Glu Val Gln Phe Asn Trp Tyr Val Asp Gly Val Glu Val His Asn
275 280 285
Ala Lys Thr Lys Pro Arg Glu Glu Gln Phe Ala Ser Thr Tyr Arg Val
290 295 300
Val Ser Val Leu Thr Val Leu His Gln Asp Trp Leu Asn Gly Lys Glu
305 310 315 320
Tyr Lys Cys Lys Val Ser Asn Lys Gly Leu Pro Ser Ser Ile Glu Lys
325 330 335
Thr Ile Ser Lys Ala Lys Gly Gln Pro Arg Glu Pro Gln Val Tyr Thr
340 345 350
Leu Pro Pro Ser Gln Glu Glu Met Thr Lys Asn Gln Val Ser Leu Thr
355 360 365
Cys Leu Val Lys Gly Phe Tyr Pro Ser Asp Ile Ala Val Glu Trp Glu
370 375 380
Ser Asn Gly Gln Pro Glu Asn Asn Tyr Lys Thr Thr Pro Pro Val Leu
385 390 395 400
Asp Ser Asp Gly Ser Phe Phe Leu Tyr Ser Arg Leu Thr Val Asp Lys
405 410 415
Ser Arg Trp Gln Glu Gly Asn Val Phe Ser Cys Ser Val Met His Glu
420 425 430
Ala Leu His Asn His Tyr Thr Gln Glu Ser Leu Ser Leu Ser Leu Asp
435 440 445
Tyr Lys Asp Asp Asp Asp Lys
450 455
<210> 56
<211> 219
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 56
Asp Ile Val Met Thr Gln Ser Pro Leu Ser Leu Pro Val Thr Pro Gly
1 5 10 15
Glu Pro Ala Ser Ile Ser Cys Arg Ser Ser Gln Ser Leu Val His Ser
20 25 30
Asn Arg Asn Thr Tyr Leu His Trp Tyr Gln Gln Lys Pro Gly Gln Ala
35 40 45
Pro Arg Leu Leu Ile Tyr Lys Val Ser Asn Arg Phe Ser Gly Val Pro
50 55 60
Asp Arg Phe Ser Gly Ser Gly Ser Gly Thr Asp Phe Thr Leu Lys Ile
65 70 75 80
Ser Arg Val Glu Ala Glu Asp Val Gly Val Tyr Tyr Cys Gly Gln Gly
85 90 95
Thr Gln Val Pro Tyr Thr Phe Gly Gln Gly Thr Lys Leu Glu Ile Lys
100 105 110
Arg Thr Val Ala Ala Pro Ser Val Phe Ile Phe Pro Pro Ser Asp Glu
115 120 125
Gln Leu Lys Ser Gly Thr Ala Ser Val Val Cys Leu Leu Asn Asn Phe
130 135 140
Tyr Pro Arg Glu Ala Lys Val Gln Trp Lys Val Asp Asn Ala Leu Gln
145 150 155 160
Ser Gly Asn Ser Gln Glu Ser Val Thr Glu Gln Asp Ser Lys Asp Ser
165 170 175
Thr Tyr Ser Leu Ser Ser Thr Leu Thr Leu Ser Lys Ala Asp Tyr Glu
180 185 190
Lys His Lys Val Tyr Ala Cys Glu Val Thr His Gln Gly Leu Ser Ser
195 200 205
Pro Val Thr Lys Ser Phe Asn Arg Gly Glu Cys
210 215
<210> 57
<211> 336
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 57
Ala Ser Thr Lys Gly Pro Ser Val Phe Pro Leu Ala Pro Ser Ser Lys
1 5 10 15
Ser Thr Ser Gly Gly Thr Ala Ala Leu Gly Cys Leu Val Lys Asp Tyr
20 25 30
Phe Pro Glu Pro Val Thr Val Ser Trp Asn Ser Gly Ala Leu Thr Ser
35 40 45
Gly Val His Thr Phe Pro Ala Val Leu Gln Ser Ser Gly Leu Tyr Ser
50 55 60
Leu Ser Ser Val Val Thr Val Ser Ser Ser Leu Gly Thr Gln Thr
65 70 75 80
Tyr Ile Cys Asn Val Asn His Lys Pro Ser Asn Thr Lys Val Asp Lys
85 90 95
Lys Val Glu Pro Lys Ser Cys Asp Lys Thr His Thr Cys Pro Pro Cys
100 105 110
Pro Ala Pro Glu Ala Gly Gly Pro Ser Val Phe Leu Phe Pro Pro
115 120 125
Lys Pro Lys Asp Thr Leu Met Ile Ser Arg Thr Pro Glu Val Thr Cys
130 135 140
Val Val Val Asp Val Ser His Glu Asp Pro Glu Val Lys Phe Asn Trp
145 150 155 160
Tyr Val Asp Gly Val Glu Val His Asn Ala Lys Thr Lys Pro Arg Glu
165 170 175
Glu Gln Tyr Ala Ser Thr Tyr Arg Val Val Ser Val Leu Thr Val Leu
180 185 190
His Gln Asp Trp Leu Asn Gly Lys Glu Tyr Lys Cys Lys Val Ser Asn
195 200 205
Lys Ala Leu Pro Ala Pro Ile Glu Lys Thr Ile Ser Lys Ala Lys Gly
210 215 220
Gln Pro Arg Glu Pro Gln Val Tyr Thr Leu Pro Pro Ser Arg Cys Glu
225 230 235 240
Leu Thr Lys Asn Gln Val Ser Leu Ser Cys Ala Val Lys Gly Phe Tyr
245 250 255
Pro Ser Asp Ile Ala Val Glu Trp Glu Ser Asn Gly Gln Pro Glu Asn
260 265 270
Asn Tyr Lys Thr Thr Pro Pro Val Leu Asp Ser Asp Gly Ser Phe Phe
275 280 285
Leu Val Ser Lys Leu Thr Val Asp Lys Ser Arg Trp Gln Gln Gly Asn
290 295 300
Val Phe Ser Cys Ser Val Met His Glu Ala Leu His Asn His Tyr Thr
305 310 315 320
Gln Lys Ser Leu Ser Leu Ser Pro Asp Tyr Lys Asp Asp Asp Asp Lys
325 330 335
<210> 58
<211> 338
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 58
Ser Ser Ala Ser Thr Lys Gly Pro Ser Val Phe Pro Leu Ala Pro Ser
1 5 10 15
Ser Lys Ser Thr Ser Gly Gly Thr Ala Ala Leu Gly Cys Leu Val Lys
20 25 30
Asp Tyr Phe Pro Glu Pro Val Thr Val Ser Trp Asn Ser Gly Ala Leu
35 40 45
Thr Ser Gly Val His Thr Phe Pro Ala Val Leu Gln Ser Ser Gly Leu
50 55 60
Tyr Ser Leu Ser Ser Val Val Thr Val Ser Ser Ser Leu Gly Thr
65 70 75 80
Gln Thr Tyr Ile Cys Asn Val Asn His Lys Pro Ser Asn Thr Lys Val
85 90 95
Asp Lys Lys Val Glu Pro Lys Ser Cys Asp Lys Thr His Thr Cys Pro
100 105 110
Pro Cys Pro Ala Pro Glu Ala Ala Gly Gly Pro Ser Val Phe Leu Phe
115 120 125
Pro Pro Lys Pro Lys Asp Thr Leu Met Ile Ser Arg Thr Pro Glu Val
130 135 140
Thr Cys Val Val Val Asp Val Ser His Glu Asp Pro Glu Val Lys Phe
145 150 155 160
Asn Trp Tyr Val Asp Gly Val Glu Val His Asn Ala Lys Thr Lys Pro
165 170 175
Arg Glu Glu Gln Tyr Ala Ser Thr Tyr Arg Val Val Ser Val Leu Thr
180 185 190
Val Leu His Gln Asp Trp Leu Asn Gly Lys Glu Tyr Lys Cys Lys Val
195 200 205
Ser Asn Lys Ala Leu Pro Ala Pro Ile Glu Lys Thr Ile Ser Lys Ala
210 215 220
Lys Gly Gln Pro Arg Glu Pro Gln Val Cys Thr Leu Pro Pro Ser Arg
225 230 235 240
Asp Glu Leu Thr Lys Asn Gln Val Ser Leu Trp Cys Leu Val Lys Gly
245 250 255
Phe Tyr Pro Ser Asp Ile Ala Val Glu Trp Glu Ser Asn Gly Gln Pro
260 265 270
Glu Asn Asn Tyr Lys Thr Thr Pro Pro Val Leu Asp Ser Asp Gly Ser
275 280 285
Phe Phe Leu Tyr Ser Lys Leu Thr Val Asp Lys Ser Arg Trp Gln Gln
290 295 300
Gly Asn Val Phe Ser Cys Ser Val Met His Glu Ala Leu His Asn His
305 310 315 320
Tyr Thr Gln Lys Ser Leu Ser Leu Ser Pro His His His His His
325 330 335
His His
<210> 59
<211> 230
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 59
Glu Pro Lys Ser Ser Asp Lys Thr His Thr Cys Pro Pro Cys Pro Ala
1 5 10 15
Pro Glu Leu Leu Gly Gly Pro Ser Val Phe Leu Phe Pro Pro Lys Pro
20 25 30
Lys Asp Thr Leu Met Ile Ser Arg Thr Pro Glu Val Thr Cys Val Val
35 40 45
Val Asp Val Ser His Glu Asp Pro Glu Val Lys Phe Asn Trp Tyr Val
50 55 60
Asp Gly Val Glu Val His Asn Ala Lys Thr Lys Pro Arg Glu Glu Gln
65 70 75 80
Tyr Asn Ser Thr Tyr Arg Val Val Ser Val Leu Thr Val Leu His Gln
85 90 95
Asp Trp Leu Asn Gly Lys Glu Tyr Lys Cys Lys Val Ser Asn Lys Ala
100 105 110
Leu Pro Ala Pro Ile Glu Lys Thr Ile Ser Lys Ala Lys Gly Gln Pro
115 120 125
Arg Glu Pro Gln Val Cys Thr Leu Pro Pro Ser Arg Asp Glu Leu Thr
130 135 140
Lys Asn Gln Val Ser Leu Trp Cys Leu Val Lys Gly Phe Tyr Pro Ser
145 150 155 160
Asp Ile Ala Val Glu Trp Glu Ser Asn Gly Gln Pro Glu Asn Asn Tyr
165 170 175
Lys Thr Pro Pro Val Leu Asp Ser Asp Gly Ser Phe Phe Leu Tyr
180 185 190
Ser Lys Leu Thr Val Asp Lys Ser Arg Trp Gln Gln Gly Asn Val Phe
195 200 205
Ser Cys Ser Val Met His Glu Ala Leu His Asn Arg Tyr Thr Gln Lys
210 215 220
Ser Leu Ser Leu Ser Pro
225 230
<210> 60
<211> 325
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 60
Ala Ser Thr Lys Gly Pro Ser Val Phe Pro Leu Ala Pro Cys Ser Arg
1 5 10 15
Ser Thr Ser Glu Ser Thr Ala Ala Leu Gly Cys Leu Val Lys Asp Tyr
20 25 30
Phe Pro Glu Pro Val Thr Val Ser Trp Asn Ser Gly Ala Leu Thr Ser
35 40 45
Gly Val His Thr Phe Pro Ala Val Leu Gln Ser Ser Gly Leu Tyr Ser
50 55 60
Leu Ser Ser Val Val Thr Val Ser Ser Ser Leu Gly Thr Lys Thr
65 70 75 80
Tyr Thr Cys Asn Val Asp His Lys Pro Ser Asn Thr Lys Val Asp Lys
85 90 95
Arg Val Glu Ser Lys Tyr Gly Pro Pro Cys Pro Pro Cys Pro Ala Pro
100 105 110
Glu Phe Arg Gly Gly Pro Lys Val Phe Leu Phe Pro Pro Lys Pro Lys
115 120 125
Asp Thr Leu Met Ile Ser Arg Thr Pro Glu Val Thr Cys Val Val Val
130 135 140
Asp Val Ser Gln Glu Asp Pro Glu Val Gln Phe Asn Trp Tyr Val Asp
145 150 155 160
Gly Val Glu Val His Asn Ala Lys Thr Lys Pro Arg Glu Glu Gln Phe
165 170 175
Ala Ser Thr Tyr Arg Val Val Ser Val Leu Thr Val Leu His Gln Asp
180 185 190
Trp Leu Asn Gly Lys Glu Tyr Lys Cys Lys Val Ser Asn Lys Gly Leu
195 200 205
Pro Ser Ser Ile Glu Lys Thr Ile Ser Lys Ala Lys Gly Gln Pro Arg
210 215 220
Glu Pro Gln Val Tyr Thr Leu Pro Pro Ser Gln Lys Glu Met Thr Lys
225 230 235 240
Asn Gln Val Ser Leu Thr Cys Leu Val Lys Gly Phe Tyr Pro Ser Asp
245 250 255
Ile Ala Val Glu Trp Glu Ser Asn Gly Gln Pro Glu Asn Asn Tyr Lys
260 265 270
Thr Pro Pro Val Leu Asp Ser Asp Gly Ser Phe Phe Leu Tyr Ser
275 280 285
Lys Leu Thr Val Asp Lys Ser Arg Trp Gln Glu Gly Asn Val Phe Ser
290 295 300
Cys Ser Val Met His Glu Ala Leu His Asn Arg Tyr Thr Gln Lys Ser
305 310 315 320
Leu Ser Leu Ser Pro
325
<210> 61
<211> 325
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 61
Ala Ser Thr Lys Gly Pro Ser Val Phe Pro Leu Ala Pro Cys Ser Arg
1 5 10 15
Ser Thr Ser Glu Ser Thr Ala Ala Leu Gly Cys Leu Val Lys Asp Tyr
20 25 30
Phe Pro Glu Pro Val Thr Val Ser Trp Asn Ser Gly Ala Leu Thr Ser
35 40 45
Gly Val His Thr Phe Pro Ala Val Leu Gln Ser Ser Gly Leu Tyr Ser
50 55 60
Leu Ser Ser Val Val Thr Val Ser Ser Ser Leu Gly Thr Gln Thr
65 70 75 80
Tyr Thr Cys Asn Val Asp His Lys Pro Ser Asn Thr Lys Val Asp Lys
85 90 95
Arg Val Glu Ser Lys Tyr Gly Pro Pro Cys Pro Pro Cys Pro Ala Pro
100 105 110
Glu Phe Arg Gly Gly Pro Lys Val Phe Leu Phe Pro Pro Lys Pro Lys
115 120 125
Asp Thr Leu Met Ile Ser Arg Thr Pro Glu Val Thr Cys Val Val Val
130 135 140
Asp Val Ser Gln Glu Asp Pro Glu Val Gln Phe Asn Trp Tyr Val Asp
145 150 155 160
Gly Val Glu Val His Asn Ala Lys Thr Lys Pro Arg Glu Glu Gln Phe
165 170 175
Ala Ser Thr Tyr Arg Val Val Ser Val Leu Thr Val Leu His Gln Asp
180 185 190
Trp Leu Asn Gly Lys Glu Tyr Lys Cys Lys Val Ser Asn Lys Gly Leu
195 200 205
Pro Ser Ser Ile Glu Lys Thr Ile Ser Lys Ala Lys Gly Gln Pro Arg
210 215 220
Glu Pro Gln Val Tyr Thr Leu Pro Pro Ser Gln Glu Glu Met Thr Lys
225 230 235 240
Asn Gln Val Ser Leu Thr Cys Leu Val Lys Gly Phe Tyr Pro Ser Asp
245 250 255
Ile Ala Val Glu Trp Glu Ser Asn Gly Gln Pro Glu Asn Asn Tyr Lys
260 265 270
Thr Pro Pro Val Leu Asp Ser Asp Gly Ser Phe Phe Leu Tyr Ser
275 280 285
Lys Leu Thr Val Asp Lys Ser Arg Trp Gln Glu Gly Asn Val Phe Ser
290 295 300
Cys Ser Val Met His Glu Ala Leu His Asn His Tyr Thr Gln Glu Ser
305 310 315 320
Leu Ser Leu Ser Pro
325
<210> 62
<211> 325
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 62
Ala Ser Thr Lys Gly Pro Ser Val Phe Pro Leu Ala Pro Cys Ser Arg
1 5 10 15
Ser Thr Ser Glu Ser Thr Ala Ala Leu Gly Cys Leu Val Lys Asp Tyr
20 25 30
Phe Pro Glu Pro Val Thr Val Ser Trp Asn Ser Gly Ala Leu Thr Ser
35 40 45
Gly Val His Thr Phe Pro Ala Val Leu Gln Ser Ser Gly Leu Tyr Ser
50 55 60
Leu Ser Ser Val Val Thr Val Ser Ser Ser Leu Gly Thr Lys Thr
65 70 75 80
Tyr Thr Cys Asn Val Asp His Lys Pro Ser Asn Thr Lys Val Asp Lys
85 90 95
Arg Val Glu Ser Lys Tyr Gly Pro Pro Cys Pro Pro Cys Pro Ala Pro
100 105 110
Glu Phe Arg Gly Gly Pro Lys Val Phe Leu Phe Pro Pro Lys Pro Lys
115 120 125
Asp Thr Leu Met Ile Ser Arg Thr Pro Glu Val Thr Cys Val Val Val
130 135 140
Asp Val Ser Gln Glu Asp Pro Glu Val Gln Phe Asn Trp Tyr Val Asp
145 150 155 160
Gly Val Glu Val His Asn Ala Lys Thr Lys Pro Arg Glu Glu Gln Phe
165 170 175
Ala Ser Thr Tyr Arg Val Val Ser Val Leu Thr Val Leu His Gln Asp
180 185 190
Trp Leu Asn Gly Lys Glu Tyr Lys Cys Lys Val Ser Asn Lys Gly Leu
195 200 205
Pro Ser Ser Ile Glu Lys Thr Ile Ser Lys Ala Lys Gly Gln Pro Arg
210 215 220
Glu Pro Gln Val Tyr Thr Leu Pro Pro Ser Gln Lys Glu Met Thr Lys
225 230 235 240
Asn Gln Val Ser Leu Thr Cys Leu Val Lys Gly Phe Tyr Pro Ser Asp
245 250 255
Ile Ala Val Glu Trp Glu Ser Asn Gly Gln Pro Glu Asn Asn Tyr Lys
260 265 270
Thr Pro Pro Val Leu Asp Ser Asp Gly Ser Phe Phe Leu Tyr Ser
275 280 285
Lys Leu Thr Val Asp Lys Ser Arg Trp Gln Glu Gly Asn Val Phe Ser
290 295 300
Cys Ser Val Met His Glu Ala Leu His Asn His Tyr Thr Gln Lys Ser
305 310 315 320
Leu Ser Leu Ser Pro
325
<210> 63
<211> 107
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 63
Arg Thr Val Ala Ala Pro Ser Val Phe Ile Phe Pro Pro Ser Asp Glu
1 5 10 15
Gln Leu Lys Ser Gly Thr Ala Ser Val Val Cys Leu Leu Asn Asn Phe
20 25 30
Tyr Pro Arg Glu Ala Lys Val Gln Trp Lys Val Asp Asn Ala Leu Gln
35 40 45
Ser Gly Asn Ser Gln Glu Ser Val Thr Glu Gln Asp Ser Lys Asp Ser
50 55 60
Thr Tyr Ser Leu Ser Ser Thr Leu Thr Leu Ser Lys Ala Asp Tyr Glu
65 70 75 80
Lys His Lys Val Tyr Ala Cys Glu Val Thr His Gln Gly Leu Ser Ser
85 90 95
Pro Val Thr Lys Ser Phe Asn Arg Gly Glu Cys
100 105
<210> 64
<211> 122
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 64
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Ala Lys Ser Asn Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Gly Ala Tyr Tyr Gly Val Asp Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 65
<211> 122
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 65
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Ala Lys Ser Asn Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Asp Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Gly Ala Tyr Tyr Gly Val Gln Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 66
<211> 122
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 66
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Ala Lys Ser Asn Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Gly Ala Tyr Tyr Gly Val Gln Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 67
<211> 122
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 67
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Val Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Ala Lys Ser Asn Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Leu Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Gly Ala Tyr Tyr Gly Val Gln Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 68
<211> 122
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 68
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Val Val Gln Pro Gly Gly
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Ala Lys Ser Asn Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Asp Asp Ser Lys Asn Ser
65 70 75 80
Leu Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Gly Ala Tyr Tyr Gly Val Asp Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 69
<211> 122
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 69
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Ala Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Gly Ala Tyr Tyr Gly Val Asp Ile Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 70
<211> 122
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 70
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Ser Lys Ser Asn Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Gly Ala Tyr Tyr Gly Val Asp Ile Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 71
<211> 122
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 71
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Gly Lys Ser Asn Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Gly Ala Tyr Tyr Gly Val Asp Ile Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 72
<211> 122
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 72
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Ala Lys Ser Asn Asn Tyr Ala Thr Tyr Tyr Ala Pro
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Gly Ala Tyr Tyr Gly Val Asp Ile Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 73
<211> 122
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 73
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Ala Lys Ser Asn Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ser Ala Tyr Tyr Gly Val Asp Ile Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 74
<211> 122
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 74
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Ala Lys Ser Asn Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Gly Ala Ser Tyr Gly Val Asp Ile Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 75
<211> 122
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 75
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Ala Lys Ser Asn Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Tyr Tyr Ser Tyr Gly Val Asp Ile Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 76
<211> 122
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 76
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Gly Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Gly Ala Tyr Tyr Gly Val Asp Ile Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 77
<211> 122
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 77
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Gly Lys Ser Asn Asn Tyr Ala Thr Tyr Tyr Ala Pro
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Gly Ala Tyr Tyr Gly Val Asp Ile Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 78
<211> 122
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 78
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Gly Lys Ser Asn Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ser Ala Ser Tyr Gly Val Asp Ile Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 79
<211> 122
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 79
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Gly Lys Ser Asn Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ser Tyr Ser Tyr Gly Val Asp Ile Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 80
<211> 122
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 80
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Gly
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Ala Lys Ser Asn Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Gly Ala Tyr Tyr Gly Val Asp Ile Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 81
<211> 122
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 81
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Gly
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Gly Lys Ser Asn Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ser Ala Ser Tyr Gly Val Asp Ile Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 82
<211> 122
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 82
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Gly Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ser Ala Ser Tyr Gly Val Asp Ile Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 83
<211> 122
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 83
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Gly Lys Ser Asn Asn Tyr Ala Thr Tyr Tyr Ala Pro
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ser Ala Ser Tyr Gly Val Asp Ile Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 84
<211> 122
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 84
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Gly Lys Ser Asn Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ser Ala Ser Tyr Gly Val Asp Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 85
<211> 122
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 85
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Gly
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Gly Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Pro
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ser Ala Ser Tyr Gly Val Asp Ile Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 86
<211> 122
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 86
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Gly
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Gly Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ser Ala Ser Tyr Gly Val Asp Ile Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 87
<211> 122
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 87
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Gly
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Gly Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ser Ala Ser Tyr Gly Val Asp Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 88
<211> 122
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 88
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Ser Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ser Ala Ser Tyr Gly Val Asp Ile Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 89
<211> 122
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 89
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Gly
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Ser Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ser Ala Ser Tyr Gly Val Asp Ile Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 90
<211> 122
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 90
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Gly
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Ser Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ser Ala Ser Tyr Gly Val Asp Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 91
<211> 122
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 91
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Val Val Gln Pro Gly Gly
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Ser Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ser Ala Ser Tyr Gly Val Asp Ile Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 92
<211> 122
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 92
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ser Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Gly Lys Ser Asn Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ser Ala Ser Tyr Gly Val Asp Ile Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 93
<211> 122
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 93
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Val Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Gly Lys Ser Asn Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ser Ala Ser Tyr Gly Val Asp Ile Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 94
<211> 122
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 94
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Val Val Gln Pro Gly Gly
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Gly Lys Ser Asn Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ser Ala Ser Tyr Gly Val Asp Ile Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 95
<211> 122
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 95
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Ser Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ser Ala Ser Tyr Gly Val Asp Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 96
<211> 122
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 96
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Ser Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ser Ala Ser Tyr Gly Val Asp Tyr Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 97
<211> 122
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 97
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Gly Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ser Ala Ser Tyr Gly Val Asp Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 98
<211> 122
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 98
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Gly Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ser Ala Ser Tyr Gly Val Asp Tyr Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 99
<211> 122
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 99
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Gly Lys Ser Asn Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ser Ala Ser Tyr Gly Val Asp Tyr Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 100
<211> 122
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 100
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met Pro Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Gly Lys Ser Asn Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ser Ala Ser Tyr Gly Val Asp Ile Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 101
<211> 122
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 101
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Asn Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ser Ala Ser Tyr Gly Val Asp Ile Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 102
<211> 122
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 102
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ser Ala Ser Tyr Gly Val Asp Ile Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 103
<211> 122
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 103
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ser Ala Ser Tyr Gly Val Asp Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 104
<211> 122
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 104
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ser Ala Ser Tyr Gly Val Asp Tyr Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 105
<211> 122
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 105
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Val Val Gln Pro Gly Gly
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ser Ala Ser Tyr Gly Val Asp Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 106
<211> 122
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 106
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ser Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Asn Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ser Ala Ser Tyr Gly Val Asp Ile Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 107
<211> 122
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 107
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ser Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ser Ala Ser Tyr Gly Val Asp Ile Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 108
<211> 122
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 108
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ser Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ser Ala Ser Tyr Gly Val Asp Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 109
<211> 122
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 109
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ser Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ser Ala Ser Tyr Gly Val Asp Tyr Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 110
<211> 122
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 110
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Asn Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Asp Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ser Ala Ser Tyr Gly Val Asp Ile Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 111
<211> 122
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 111
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Asp Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ser Ala Ser Tyr Gly Val Asp Ile Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 112
<211> 122
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 112
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Asp Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ser Ala Ser Tyr Gly Val Asp Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 113
<211> 122
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 113
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Asp Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ser Ala Ser Tyr Gly Val Asp Tyr Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 114
<211> 122
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 114
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Asn Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Leu Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ser Ala Ser Tyr Gly Val Asp Ile Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 115
<211> 122
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 115
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Leu Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ser Ala Ser Tyr Gly Val Asp Ile Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 116
<211> 122
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 116
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Leu Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ser Ala Ser Tyr Gly Val Asp Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 117
<211> 122
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 117
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Leu Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ser Ala Ser Tyr Gly Val Asp Tyr Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 118
<211> 122
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 118
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Asn Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Asp Asp Ser Lys Asn Ser
65 70 75 80
Leu Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ser Ala Ser Tyr Gly Val Asp Ile Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 119
<211> 122
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 119
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Asp Asp Ser Lys Asn Ser
65 70 75 80
Leu Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ser Ala Ser Tyr Gly Val Asp Ile Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 120
<211> 122
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 120
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Asp Asp Ser Lys Asn Ser
65 70 75 80
Leu Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ser Ala Ser Tyr Gly Val Asp Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 121
<211> 122
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 121
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Asp Asp Ser Lys Asn Ser
65 70 75 80
Leu Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ser Ala Ser Tyr Gly Val Asp Tyr Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 122
<211> 122
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 122
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ala Ala Ser Tyr Gly Val Asp Ile Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 123
<211> 122
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 123
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ala Ala Ser Tyr Gly Val Asp Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 124
<211> 122
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 124
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Val Val Gln Pro Gly Gly
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ala Ala Ser Tyr Gly Val Asp Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 125
<211> 122
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 125
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ser Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ala Ala Ser Tyr Gly Val Asp Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 126
<211> 122
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 126
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Asp Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ala Ala Ser Tyr Gly Val Asp Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 127
<211> 122
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 127
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Leu Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ala Ala Ser Tyr Gly Val Asp Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 128
<211> 122
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 128
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Asp Asp Ser Lys Asn Ser
65 70 75 80
Leu Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ala Ala Ser Tyr Gly Val Asp Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 129
<211> 122
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 129
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Val Val Gln Pro Gly Gly
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Asp Asp Ser Lys Asn Ser
65 70 75 80
Leu Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ala Ala Ser Tyr Gly Val Asp Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 130
<211> 122
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 130
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Val Val Gln Pro Gly Gly
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Asp Asp Ser Lys Asn Ser
65 70 75 80
Leu Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ala Ala Ser Tyr Gly Val Asp Ile Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 131
<211> 122
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 131
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Val Val Gln Pro Gly Gly
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Asp Asp Ser Lys Asn Ser
65 70 75 80
Leu Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ala Ala Ser Tyr Gly Val Asp Tyr Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 132
<211> 122
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 132
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Asn Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ala Ala Ser Tyr Gly Val Asp Ile Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 133
<211> 122
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 133
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ala Ala Ser Tyr Gly Val Asp Ile Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 134
<211> 122
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 134
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Asp Asp Ser Lys Asn Ser
65 70 75 80
Leu Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ala Ala Ser Tyr Gly Val Asp Ile Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 135
<211> 122
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 135
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Val Val Gln Pro Gly Gly
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ala Ala Ser Tyr Gly Val Asp Ile Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 136
<211> 122
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 136
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Asp Asp Ser Lys Asn Ser
65 70 75 80
Leu Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ala Ala Ser Tyr Gly Val Asp Tyr Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 137
<211> 122
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 137
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Val Val Gln Pro Gly Gly
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ala Ala Ser Tyr Gly Val Asp Tyr Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 138
<211> 124
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 138
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Asn Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ala Ala Glu Met Val Arg Asp Asp
100 105 110
Ile Trp Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 139
<211> 128
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 139
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Asn Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ala Ala Glu Met Val Val Asp Ser
100 105 110
Tyr Gly Val Asp Ile Trp Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120 125
<210> 140
<211> 128
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 140
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Asn Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ala Ala Val Arg Arg Arg Leu Ser Ser
100 105 110
Tyr Gly Val Asp Ile Trp Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120 125
<210> 141
<211> 122
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 141
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ala Gly Tyr Gly Val Asp Ile Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 142
<211> 122
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 142
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Asp Asp Ser Lys Asn Ser
65 70 75 80
Leu Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ala Ala Gly Tyr Gly Val Asp Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 143
<211> 122
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 143
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Asn Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ala Gly Tyr Gly Val Asp Ile Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 144
<211> 122
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 144
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Val Val Gln Pro Gly Gly
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ala Gly Tyr Gly Val Asp Ile Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 145
<211> 122
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 145
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Gly
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Asp Asp Ser Lys Asn Ser
65 70 75 80
Leu Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ala Ala Gly Tyr Gly Val Asp Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 146
<211> 122
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 146
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Lys Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Asp Asp Ser Lys Asn Ser
65 70 75 80
Leu Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ala Ala Gly Tyr Gly Val Asp Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 147
<211> 122
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 147
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Ala Gly Arg Phe Thr Ile Ser Arg Asp Asp Ser Lys Asn Ser
65 70 75 80
Leu Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ala Ala Gly Tyr Gly Val Asp Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 148
<211> 122
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 148
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Gln Gly Arg Phe Thr Ile Ser Arg Asp Asp Ser Lys Asn Ser
65 70 75 80
Leu Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ala Ala Gly Tyr Gly Val Asp Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 149
<211> 122
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 149
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Ser Gly Arg Phe Thr Ile Ser Arg Asp Asp Ser Lys Asn Ser
65 70 75 80
Leu Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ala Ala Gly Tyr Gly Val Asp Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 150
<211> 122
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 150
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Phe Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Asp Asp Ser Lys Asn Ser
65 70 75 80
Leu Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ala Ala Gly Tyr Gly Val Asp Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 151
<211> 122
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 151
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Gly Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Asp Asp Ser Lys Asn Ser
65 70 75 80
Leu Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ala Ala Gly Tyr Gly Val Asp Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 152
<211> 122
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 152
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Leu Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Asp Asp Ser Lys Asn Ser
65 70 75 80
Leu Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ala Ala Gly Tyr Gly Val Asp Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 153
<211> 122
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 153
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Pro Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Asp Asp Ser Lys Asn Ser
65 70 75 80
Leu Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ala Ala Gly Tyr Gly Val Asp Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 154
<211> 122
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 154
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Gln Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Asp Asp Ser Lys Asn Ser
65 70 75 80
Leu Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ala Ala Gly Tyr Gly Val Asp Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 155
<211> 122
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 155
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Ser Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Asp Asp Ser Lys Asn Ser
65 70 75 80
Leu Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ala Ala Gly Tyr Gly Val Asp Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 156
<211> 122
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 156
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Val Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Asp Asp Ser Lys Asn Ser
65 70 75 80
Leu Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ala Ala Gly Tyr Gly Val Asp Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 157
<211> 122
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 157
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Thr Tyr Phe Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Asp Asp Ser Lys Asn Ser
65 70 75 80
Leu Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ala Ala Gly Tyr Gly Val Asp Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 158
<211> 122
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 158
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Thr Tyr Gly Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Asp Asp Ser Lys Asn Ser
65 70 75 80
Leu Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ala Ala Gly Tyr Gly Val Asp Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 159
<211> 122
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 159
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Thr Tyr Ile Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Asp Asp Ser Lys Asn Ser
65 70 75 80
Leu Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ala Ala Gly Tyr Gly Val Asp Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 160
<211> 122
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 160
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Thr Tyr Leu Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Asp Asp Ser Lys Asn Ser
65 70 75 80
Leu Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ala Ala Gly Tyr Gly Val Asp Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 161
<211> 122
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 161
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Thr Tyr Pro Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Asp Asp Ser Lys Asn Ser
65 70 75 80
Leu Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ala Ala Gly Tyr Gly Val Asp Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 162
<211> 122
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 162
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Thr Tyr Gln Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Asp Asp Ser Lys Asn Ser
65 70 75 80
Leu Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ala Ala Gly Tyr Gly Val Asp Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 163
<211> 122
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 163
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Thr Tyr Thr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Asp Asp Ser Lys Asn Ser
65 70 75 80
Leu Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ala Ala Gly Tyr Gly Val Asp Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 164
<211> 122
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 164
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Leu Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Thr Tyr Val Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Asp Asp Ser Lys Asn Ser
65 70 75 80
Leu Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ala Ala Gly Tyr Gly Val Asp Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 165
<211> 122
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 165
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Val Val Gln Pro Gly Arg
1 5 10 15
Ser Leu Lys Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Asp Asp Ser Lys Asn Ser
65 70 75 80
Leu Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ala Ala Gly Tyr Gly Val Asp Ala Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 166
<211> 122
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 166
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Val Val Gln Pro Gly Gly
1 5 10 15
Ser Leu Lys Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Thr Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ala Gly Tyr Gly Val Asp Ile Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 167
<211> 122
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 167
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Val Val Gln Pro Gly Gly
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Gln Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ala Gly Tyr Gly Val Asp Ile Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 168
<211> 122
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 168
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Val Val Gln Pro Gly Gly
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Thr Tyr Val Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ala Gly Tyr Gly Val Asp Ile Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 169
<211> 122
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 169
Gln Val Gln Leu Val Glu Ser Gly Gly Gly Val Val Gln Pro Gly Gly
1 5 10 15
Ser Leu Arg Leu Ser Cys Ala Ala Ser Gly Phe Thr Phe Ser Asn Ala
20 25 30
Trp Met His Trp Val Arg Gln Ala Pro Gly Lys Gly Leu Glu Trp Val
35 40 45
Ala Gln Ile Lys Asp Lys Ser Gln Asn Tyr Ala Ser Tyr Tyr Ala Glu
50 55 60
Ser Val Lys Gly Arg Phe Thr Ile Ser Arg Ala Asp Ser Lys Asn Ser
65 70 75 80
Ile Tyr Leu Gln Met Asn Ser Leu Lys Thr Glu Asp Thr Ala Val Tyr
85 90 95
Tyr Cys Arg Tyr Val His Tyr Ala Gly Tyr Gly Val Asp Ile Trp
100 105 110
Gly Gln Gly Thr Thr Val Thr Val Ser Ser
115 120
<210> 170
<211> 115
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 170
Gln Val Gln Leu Val Gln Ser Gly Ala Glu Val Lys Lys Pro Gly Ala
1 5 10 15
Ser Val Lys Val Ser Cys Lys Ala Ser Gly Tyr Thr Phe Thr Asp Tyr
20 25 30
Glu Met His Trp Ile Arg Gln Pro Pro Gly Gln Gly Leu Glu Trp Ile
35 40 45
Gly Ala Ile Asp Gly Asp Thr Pro Asp Thr Ala Tyr Ser Gln Lys Phe
50 55 60
Lys Gly Arg Val Thr Leu Thr Ala Asp Lys Ser Thr Ser Thr Ala Tyr
65 70 75 80
Met Glu Leu Ser Ser Leu Thr Ser Glu Asp Thr Ala Val Tyr Tyr Cys
85 90 95
Thr Arg Phe Tyr Ser Tyr Thr Tyr Trp Gly Gln Gly Thr Leu Val Thr
100 105 110
Val Ser Ser
115
<210> 171
<211> 115
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 171
Gln Val Gln Leu Val Gln Ser Gly Ala Glu Val Lys Lys Pro Gly Ala
1 5 10 15
Ser Val Lys Val Ser Cys Lys Ala Ser Gly Tyr Thr Phe Thr Asp Tyr
20 25 30
Glu Met His Trp Ile Arg Gln Pro Pro Gly Gln Gly Leu Glu Trp Ile
35 40 45
Gly Ala Ile Asp Gly Lys Thr Pro Asp Thr Ala Glu Ser Gln Lys Phe
50 55 60
Lys Gly Arg Val Thr Leu Thr Ala Asp Lys Ser Thr Ser Thr Ala Tyr
65 70 75 80
Met Glu Leu Ser Ser Leu Thr Ser Glu Asp Thr Ala Val Tyr Tyr Cys
85 90 95
Thr Arg Phe Tyr Ser Tyr Thr Tyr Trp Gly Gln Gly Thr Leu Val Thr
100 105 110
Val Ser Ser
115
<210> 172
<211> 115
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 172
Gln Val Gln Leu Val Gln Ser Gly Ala Glu Val Lys Lys Pro Gly Ala
1 5 10 15
Ser Val Lys Val Ser Cys Lys Ala Ser Gly Tyr Thr Phe Thr Asp Tyr
20 25 30
Glu Met His Trp Ile Arg Gln Pro Pro Gly Gln Gly Leu Glu Trp Ile
35 40 45
Gly Ala Ile Asp Gly Lys Thr Pro Asp Thr Ala Tyr Glu Gln Lys Phe
50 55 60
Lys Gly Arg Val Thr Leu Thr Ala Asp Lys Ser Thr Ser Thr Ala Tyr
65 70 75 80
Met Glu Leu Ser Ser Leu Thr Ser Glu Asp Thr Ala Val Tyr Tyr Cys
85 90 95
Thr Arg Phe Tyr Ser Tyr Thr Tyr Trp Gly Gln Gly Thr Leu Val Thr
100 105 110
Val Ser Ser
115
<210> 173
<211> 115
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 173
Gln Val Gln Leu Val Gln Ser Gly Ala Glu Val Lys Lys Pro Gly Ala
1 5 10 15
Ser Val Lys Val Ser Cys Lys Ala Ser Gly Tyr Thr Phe Thr Asp Tyr
20 25 30
Glu Met His Trp Ile Arg Gln Pro Pro Gly Gln Gly Leu Glu Trp Ile
35 40 45
Gly Ala Ile Asp Gly Lys Thr Pro Asp Thr Ala Tyr Ser Asp Lys Phe
50 55 60
Lys Gly Arg Val Thr Leu Thr Ala Asp Lys Ser Thr Ser Thr Ala Tyr
65 70 75 80
Met Glu Leu Ser Ser Leu Thr Ser Glu Asp Thr Ala Val Tyr Tyr Cys
85 90 95
Thr Arg Phe Tyr Ser Tyr Thr Tyr Trp Gly Gln Gly Thr Leu Val Thr
100 105 110
Val Ser Ser
115
<210> 174
<211> 115
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 174
Gln Val Gln Leu Val Gln Ser Gly Ala Glu Val Lys Lys Pro Gly Ala
1 5 10 15
Ser Val Lys Val Ser Cys Lys Ala Ser Gly Tyr Thr Phe Thr Asp Tyr
20 25 30
Glu Met His Trp Ile Arg Gln Pro Pro Gly Gln Gly Leu Glu Trp Ile
35 40 45
Gly Ala Ile Asp Gly Glu Thr Pro Asp Thr Ala Tyr Ser Gln Lys Phe
50 55 60
Lys Gly Arg Val Thr Leu Thr Ala Asp Lys Ser Thr Ser Thr Ala Tyr
65 70 75 80
Met Glu Leu Ser Ser Leu Thr Ser Glu Asp Thr Ala Val Tyr Tyr Cys
85 90 95
Thr Arg Phe Tyr Ser Tyr Thr Tyr Trp Gly Gln Gly Thr Leu Val Thr
100 105 110
Val Ser Ser
115
<210> 175
<211> 115
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 175
Gln Val Gln Leu Val Gln Ser Gly Ala Glu Val Lys Lys Pro Gly Ala
1 5 10 15
Ser Val Lys Val Ser Cys Lys Ala Ser Gly Tyr Thr Phe Thr Asp Tyr
20 25 30
Glu Met His Trp Ile Arg Gln Pro Pro Gly Gln Gly Leu Glu Trp Ile
35 40 45
Gly Ala Ile Asp Gly Asp Thr Pro Asp Thr Ala Tyr Glu Gln Lys Phe
50 55 60
Lys Gly Arg Val Thr Leu Thr Ala Asp Lys Ser Thr Ser Thr Ala Tyr
65 70 75 80
Met Glu Leu Ser Ser Leu Thr Ser Glu Asp Thr Ala Val Tyr Tyr Cys
85 90 95
Thr Arg Phe Tyr Ser Tyr Thr Tyr Trp Gly Gln Gly Thr Leu Val Thr
100 105 110
Val Ser Ser
115
<210> 176
<211> 115
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 176
Gln Val Gln Leu Val Gln Ser Gly Ala Glu Val Lys Lys Pro Gly Ala
1 5 10 15
Ser Val Lys Val Ser Cys Lys Ala Ser Gly Tyr Thr Phe Thr Asp Tyr
20 25 30
Glu Met His Trp Ile Arg Gln Pro Pro Gly Gln Gly Leu Glu Trp Ile
35 40 45
Gly Ala Ile Asp Gly Lys Thr Pro Asp Thr Ala Glu Glu Gln Lys Phe
50 55 60
Lys Gly Arg Val Thr Leu Thr Ala Asp Lys Ser Thr Ser Thr Ala Tyr
65 70 75 80
Met Glu Leu Ser Ser Leu Thr Ser Glu Asp Thr Ala Val Tyr Tyr Cys
85 90 95
Thr Arg Phe Tyr Ser Tyr Thr Tyr Trp Gly Gln Gly Thr Leu Val Thr
100 105 110
Val Ser Ser
115
<210> 177
<211> 115
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 177
Gln Val Gln Leu Val Gln Ser Gly Ala Glu Val Lys Lys Pro Gly Ala
1 5 10 15
Ser Val Thr Val Ser Cys Lys Ala Ser Gly Tyr Thr Phe Thr Asp Tyr
20 25 30
Glu Met His Trp Ile Arg Gln Pro Pro Gly Gln Gly Leu Glu Trp Ile
35 40 45
Gly Ala Ile Asp Gly Lys Thr Pro Asp Thr Ala Tyr Glu Gln Lys Phe
50 55 60
Lys Gly Arg Val Thr Leu Thr Ala Asp Lys Ser Thr Ser Thr Ala Tyr
65 70 75 80
Met Glu Leu Ser Ser Leu Thr Ser Glu Asp Thr Ala Val Tyr Tyr Cys
85 90 95
Thr Arg Phe Tyr Ser Tyr Thr Tyr Trp Gly Gln Gly Thr Leu Val Thr
100 105 110
Val Ser Ser
115
<210> 178
<211> 115
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 178
Gln Val Gln Leu Val Gln Ser Gly Ala Glu Val Lys Lys Pro Gly Ala
1 5 10 15
Ser Val Lys Val Ser Cys Lys Ala Ser Gly Tyr Thr Phe Thr Asp Tyr
20 25 30
Glu Met His Trp Ile Arg Gln Pro Pro Gly Glu Gly Leu Glu Trp Ile
35 40 45
Gly Ala Ile Asp Gly Lys Thr Pro Asp Thr Ala Tyr Glu Gln Lys Phe
50 55 60
Lys Gly Arg Val Thr Leu Thr Ala Asp Lys Ser Thr Ser Thr Ala Tyr
65 70 75 80
Met Glu Leu Ser Ser Leu Thr Ser Glu Asp Thr Ala Val Tyr Tyr Cys
85 90 95
Thr Arg Phe Tyr Ser Tyr Thr Tyr Trp Gly Gln Gly Thr Leu Val Thr
100 105 110
Val Ser Ser
115
<210> 179
<211> 115
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 179
Gln Val Gln Leu Val Gln Ser Gly Ala Glu Val Lys Lys Pro Gly Ala
1 5 10 15
Ser Val Lys Val Ser Cys Lys Ala Ser Gly Tyr Thr Phe Thr Asp Tyr
20 25 30
Glu Met His Trp Ile Arg Gln Pro Pro Gly Gln Gly Leu Glu Trp Ile
35 40 45
Gly Ala Ile Asp Gly Lys Thr Pro Asp Thr Ala Tyr Glu Glu Ser Phe
50 55 60
Lys Gly Arg Val Thr Leu Thr Ala Asp Lys Ser Thr Ser Thr Ala Tyr
65 70 75 80
Met Glu Leu Ser Ser Leu Thr Ser Glu Asp Thr Ala Val Tyr Tyr Cys
85 90 95
Thr Arg Phe Tyr Ser Tyr Thr Tyr Trp Gly Gln Gly Thr Leu Val Thr
100 105 110
Val Ser Ser
115
<210> 180
<211> 115
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 180
Gln Val Gln Leu Val Gln Ser Gly Ala Glu Val Lys Lys Pro Gly Ala
1 5 10 15
Ser Val Lys Val Ser Cys Lys Ala Ser Gly Tyr Thr Phe Thr Asp Tyr
20 25 30
Glu Met His Trp Ile Arg Gln Pro Pro Gly Gln Gly Leu Glu Trp Ile
35 40 45
Gly Ala Ile Asp Gly Lys Thr Pro Asp Thr Ala Tyr Glu Gln Lys Phe
50 55 60
Gln Asp Arg Val Thr Leu Thr Ala Asp Lys Ser Thr Ser Thr Ala Tyr
65 70 75 80
Met Glu Leu Ser Ser Leu Thr Ser Glu Asp Thr Ala Val Tyr Tyr Cys
85 90 95
Thr Arg Phe Tyr Ser Tyr Thr Tyr Trp Gly Gln Gly Thr Leu Val Thr
100 105 110
Val Ser Ser
115
<210> 181
<211> 115
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 181
Gln Val Gln Leu Val Gln Ser Gly Ala Glu Val Lys Lys Pro Gly Ala
1 5 10 15
Ser Val Thr Val Ser Cys Lys Ala Ser Gly Tyr Thr Phe Thr Asp Tyr
20 25 30
Glu Met His Trp Ile Arg Gln Pro Pro Gly Glu Gly Leu Glu Trp Ile
35 40 45
Gly Ala Ile Asp Gly Lys Thr Pro Asp Thr Ala Tyr Glu Gln Lys Phe
50 55 60
Lys Gly Arg Val Thr Leu Thr Ala Asp Lys Ser Thr Ser Thr Ala Tyr
65 70 75 80
Met Glu Leu Ser Ser Leu Thr Ser Glu Asp Thr Ala Val Tyr Tyr Cys
85 90 95
Thr Arg Phe Tyr Ser Tyr Thr Tyr Trp Gly Gln Gly Thr Leu Val Thr
100 105 110
Val Ser Ser
115
<210> 182
<211> 115
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 182
Gln Val Gln Leu Val Gln Ser Gly Ala Glu Val Lys Lys Pro Gly Ala
1 5 10 15
Ser Val Thr Val Ser Cys Lys Ala Ser Gly Tyr Thr Phe Thr Asp Tyr
20 25 30
Glu Met His Trp Ile Arg Gln Pro Pro Gly Gln Gly Leu Glu Trp Ile
35 40 45
Gly Ala Ile Asp Gly Glu Thr Pro Asp Thr Ala Tyr Ser Gln Lys Phe
50 55 60
Lys Gly Arg Val Thr Leu Thr Ala Asp Lys Ser Thr Ser Thr Ala Tyr
65 70 75 80
Met Glu Leu Ser Ser Leu Thr Ser Glu Asp Thr Ala Val Tyr Tyr Cys
85 90 95
Thr Arg Phe Tyr Ser Tyr Thr Tyr Trp Gly Gln Gly Thr Leu Val Thr
100 105 110
Val Ser Ser
115
<210> 183
<211> 115
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 183
Gln Val Gln Leu Val Gln Ser Gly Ala Glu Val Lys Lys Pro Gly Ala
1 5 10 15
Ser Val Lys Val Ser Cys Lys Ala Ser Gly Tyr Thr Phe Thr Asp Tyr
20 25 30
Glu Met His Trp Ile Arg Gln Pro Pro Gly Glu Gly Leu Glu Trp Ile
35 40 45
Gly Ala Ile Asp Gly Glu Thr Pro Asp Thr Ala Tyr Ser Gln Lys Phe
50 55 60
Lys Gly Arg Val Thr Leu Thr Ala Asp Lys Ser Thr Ser Thr Ala Tyr
65 70 75 80
Met Glu Leu Ser Ser Leu Thr Ser Glu Asp Thr Ala Val Tyr Tyr Cys
85 90 95
Thr Arg Phe Tyr Ser Tyr Thr Tyr Trp Gly Gln Gly Thr Leu Val Thr
100 105 110
Val Ser Ser
115
<210> 184
<211> 115
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 184
Gln Val Gln Leu Val Gln Ser Gly Ala Glu Val Lys Lys Pro Gly Ala
1 5 10 15
Ser Val Thr Val Ser Cys Lys Ala Ser Gly Tyr Thr Phe Thr Asp Tyr
20 25 30
Glu Met His Trp Ile Arg Gln Pro Pro Gly Glu Gly Leu Glu Trp Ile
35 40 45
Gly Ala Ile Asp Gly Glu Thr Pro Asp Thr Ala Tyr Ser Gln Lys Phe
50 55 60
Lys Gly Arg Val Thr Leu Thr Ala Asp Lys Ser Thr Ser Thr Ala Tyr
65 70 75 80
Met Glu Leu Ser Ser Leu Thr Ser Glu Asp Thr Ala Val Tyr Tyr Cys
85 90 95
Thr Arg Phe Tyr Ser Tyr Thr Tyr Trp Gly Gln Gly Thr Leu Val Thr
100 105 110
Val Ser Ser
115
<210> 185
<211> 115
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 185
Gln Val Gln Leu Val Gln Ser Gly Ala Glu Val Lys Lys Pro Gly Ala
1 5 10 15
Ser Val Lys Val Ser Cys Lys Ala Ser Gly Tyr Thr Phe Thr Asp Tyr
20 25 30
Glu Met His Trp Ile Arg Gln Pro Pro Gly Gln Gly Leu Glu Trp Ile
35 40 45
Gly Ala Ile Asp Gly Glu Thr Pro Asp Thr Ala Tyr Ser Glu Ser Phe
50 55 60
Lys Gly Arg Val Thr Leu Thr Ala Asp Lys Ser Thr Ser Thr Ala Tyr
65 70 75 80
Met Glu Leu Ser Ser Leu Thr Ser Glu Asp Thr Ala Val Tyr Tyr Cys
85 90 95
Thr Arg Phe Tyr Ser Tyr Thr Tyr Trp Gly Gln Gly Thr Leu Val Thr
100 105 110
Val Ser Ser
115
<210> 186
<211> 115
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 186
Gln Val Gln Leu Val Gln Ser Gly Ala Glu Val Lys Lys Pro Gly Ala
1 5 10 15
Ser Val Lys Val Ser Cys Lys Ala Ser Gly Tyr Glu Phe Thr Asp Tyr
20 25 30
Glu Met His Trp Ile Arg Gln Pro Pro Gly Gln Gly Leu Glu Trp Ile
35 40 45
Gly Ala Ile Asp Gly Lys Thr Pro Asp Thr Ala Tyr Ser Gln Lys Phe
50 55 60
Lys Gly Arg Val Thr Leu Thr Ala Asp Lys Ser Thr Ser Thr Ala Tyr
65 70 75 80
Met Glu Leu Ser Ser Leu Thr Ser Glu Asp Thr Ala Val Tyr Tyr Cys
85 90 95
Thr Arg Phe Tyr Ser Tyr Thr Tyr Trp Gly Gln Gly Thr Leu Val Thr
100 105 110
Val Ser Ser
115
<210> 187
<211> 115
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 187
Gln Val Gln Leu Val Gln Ser Gly Ala Glu Val Lys Lys Pro Gly Ala
1 5 10 15
Ser Val Lys Val Ser Cys Lys Ala Ser Gly Tyr Thr Phe Glu Asp Tyr
20 25 30
Glu Met His Trp Ile Arg Gln Pro Pro Gly Gln Gly Leu Glu Trp Ile
35 40 45
Gly Ala Ile Asp Gly Lys Thr Pro Asp Thr Ala Tyr Ser Gln Lys Phe
50 55 60
Lys Gly Arg Val Thr Leu Thr Ala Asp Lys Ser Thr Ser Thr Ala Tyr
65 70 75 80
Met Glu Leu Ser Ser Leu Thr Ser Glu Asp Thr Ala Val Tyr Tyr Cys
85 90 95
Thr Arg Phe Tyr Ser Tyr Thr Tyr Trp Gly Gln Gly Thr Leu Val Thr
100 105 110
Val Ser Ser
115
<210> 188
<211> 115
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 188
Gln Val Gln Leu Val Gln Ser Gly Ala Glu Val Lys Lys Pro Gly Ala
1 5 10 15
Ser Val Lys Val Ser Cys Lys Ala Ser Gly Tyr Thr Phe Thr Asp Tyr
20 25 30
Glu Met His Trp Ile Arg Gln Pro Pro Gly Gln Gly Leu Glu Trp Ile
35 40 45
Gly Ala Ile Asp Gly Lys Thr Pro Asp Thr Ala Tyr Ser Glu Lys Phe
50 55 60
Lys Gly Arg Val Thr Leu Thr Ala Asp Lys Ser Thr Ser Thr Ala Tyr
65 70 75 80
Met Glu Leu Ser Ser Leu Thr Ser Glu Asp Thr Ala Val Tyr Tyr Cys
85 90 95
Thr Arg Phe Tyr Ser Tyr Thr Tyr Trp Gly Gln Gly Thr Leu Val Thr
100 105 110
Val Ser Ser
115
<210> 189
<211> 115
<212> PRT
<213> Artificial
<220>
An artificially generated sequence
<400> 189
Gln Val Gln Leu Val Gln Ser Gly Ala Glu Val Lys Lys Pro Gly Ala
1 5 10 15
Ser Val Lys Val Ser Cys Lys Ala Ser Gly Tyr Thr Phe Thr Asp Tyr
20 25 30
Glu Met His Trp Ile Arg Gln Pro Pro Gly Gln Gly Leu Glu Trp Ile
35 40 45
Gly Ala Ile Asp Gly Lys Thr Pro Asp Thr Ala Tyr Ser Gln Lys
Claims (31)
(1) 글리피칸 3 결합 활성을 갖는 항체 가변 영역을 포함하는 도메인,
(2) T 세포 수용체 복합체 결합 활성을 갖는 항체 가변 영역을 포함하는 도메인, 및
(3) Fcγ 수용체에 대한 결합 활성이 저하되어 있는 Fc 영역을 포함하는 도메인
을 포함하고, (1)의 가변 영역과 (2)의 가변 영역에 포함되는 L쇄 가변 영역이 공통의 아미노산 서열인 다중특이성 항원 결합 분자로서, 세포상해 활성이, 글리피칸 3 결합 도메인이 서열번호 47 및 48로 이루어지고, T 세포 수용체 복합체 결합 도메인이 서열번호 49 및 50으로 이루어지는 이중특이성 항체와 비교하여, 동등하거나 또는 그 이상인, 다중특이성 항원 결합 분자.The following domains;
(1) a domain comprising an antibody variable region having glypicane 3 binding activity,
(2) a domain comprising an antibody variable region having T cell receptor complex binding activity, and
(3) a domain containing an Fc region in which the binding activity to the Fc? Receptor is decreased
, Wherein the variable region of (1) and the variable region of the variable region of (2) have a common amino acid sequence, wherein the cytotoxic activity is the cytotoxic activity, and the glypicane 3 binding domain is SEQ ID NO: 47, and 48, wherein the T cell receptor complex binding domain is equal to or greater than the bispecific antibody of SEQ ID NOs: 49 and 50.
세포상해 활성이 T 세포 의존적 세포상해 활성인, 다중특이성 항원 결합 분자.The method according to claim 1,
A multispecific antigen binding molecule wherein the cytotoxic activity is a T cell dependent cytotoxic activity.
T 세포 수용체 복합체 결합 활성이 T 세포 수용체에 대한 결합 활성인, 다중특이성 항원 결합 분자.3. The method according to claim 1 or 2,
A multispecific antigen binding molecule wherein the T cell receptor complex binding activity is a binding activity to a T cell receptor.
T 세포 수용체 복합체 결합 활성이 CD3 ε쇄에 대한 결합 활성인, 다중특이성 항원 결합 분자.4. The method according to any one of claims 1 to 3,
T-cell receptor complex binding activity is a binding activity to the CD3 < RTI ID = 0.0 > epsilon < / RTI > chain.
제 1 항(1)에 기재된 항체 가변 영역이, 하기 (a1)∼(a5)로부터 선택되는 어느 하나의 H쇄 CDR1, CDR2 및 CDR3의 조합을 포함하는 항체 가변 영역, 또는 이것과 기능적으로 동등한 항체 가변 영역인, 다중특이성 항원 결합 분자.
(a1) CDR1, CDR2 및 CDR3이, 서열번호: 40에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다
(a2) CDR1, CDR2 및 CDR3이, 서열번호: 197에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다
(a3) CDR1, CDR2 및 CDR3이, 서열번호: 206에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다
(a4) CDR1, CDR2 및 CDR3이, 서열번호: 211에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다
(a5) CDR1, CDR2 및 CDR3이, 서열번호: 215에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다5. The method according to any one of claims 1 to 4,
The antibody-expressing antibody according to any one of claims 1 to 3, wherein the antibody-variable region is selected from the group consisting of an antibody variable region comprising any combination of H chain CDR1, CDR2 and CDR3 selected from the following (a1) to (a5) Variant, multispecific antigen binding molecule.
(a1) CDR1, CDR2 and CDR3 are identical to the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 40
(a2) CDR1, CDR2 and CDR3 are identical to the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 197
(a3) CDR1, CDR2 and CDR3 are identical to the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 206
(a4) CDR1, CDR2 and CDR3 are identical to the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 211
(a5) CDR1, CDR2 and CDR3 are identical to the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 215
제 1 항(2)에 기재된 항체 가변 영역이, 하기 (b1)∼(b15)로부터 선택되는 어느 하나의 H쇄 CDR1, CDR2 및 CDR3의 아미노산 서열의 조합을 포함하는 항체 가변 영역, 또는 이것과 기능적으로 동등한 항체 가변 영역인, 다중특이성 항원 결합 분자.
(b1) CDR1, CDR2 및 CDR3이, 서열번호: 52에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다
(b2) CDR1, CDR2 및 CDR3이, 서열번호: 103에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다
(b3) CDR1, CDR2 및 CDR3이, 서열번호: 122에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다
(b4) CDR1, CDR2 및 CDR3이, 서열번호: 128에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다
(b5) CDR1, CDR2 및 CDR3이, 서열번호: 129에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다
(b6) CDR1, CDR2 및 CDR3이, 서열번호: 132에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다
(b7) CDR1, CDR2 및 CDR3이, 서열번호: 142에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다
(b8) CDR1, CDR2 및 CDR3이, 서열번호: 144에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다
(b9) CDR1, CDR2 및 CDR3이, 서열번호: 164에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다
(b10) CDR1, CDR2 및 CDR3이, 서열번호: 168에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다
(b11) CDR1, CDR2 및 CDR3이, 서열번호: 421에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다
(b12) CDR1, CDR2 및 CDR3이, 서열번호: 424에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다
(b13) CDR1, CDR2 및 CDR3이, 서열번호: 426에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다
(b14) CDR1, CDR2 및 CDR3이, 서열번호: 429에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다
(b15) CDR1, CDR2 및 CDR3이, 서열번호: 430에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다5. The method according to any one of claims 1 to 4,
The antibody-expressing antibody according to (1) or (2), wherein the antibody-variable region is selected from the group consisting of an antibody variable region comprising a combination of amino acid sequences of any one of H chain CDR1, CDR2 and CDR3 selected from (b1) , ≪ / RTI > which is an antibody variable region homologous to a multispecific antigen.
(b1) CDR1, CDR2 and CDR3 are identical to the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 52
(b2) CDR1, CDR2 and CDR3 are identical to the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 103
(b3) CDR1, CDR2 and CDR3 are identical to the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 122
(b4) CDR1, CDR2 and CDR3 are identical to the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 128
(b5) CDR1, CDR2 and CDR3 are identical to the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 129
(b6) CDR1, CDR2 and CDR3 are identical to the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 132
(b7) CDR1, CDR2 and CDR3 are identical to the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 142
(b8) CDR1, CDR2 and CDR3 are identical to the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 144
(b9) CDR1, CDR2 and CDR3 are identical to the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 164
(b10) CDR1, CDR2 and CDR3 are identical to the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 168
(b11) CDR1, CDR2 and CDR3 are identical to the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 421
(b12) CDR1, CDR2 and CDR3 are identical to the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 424
(b13) CDR1, CDR2 and CDR3 are identical to the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 426
(b14) CDR1, CDR2 and CDR3 are identical to the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 429
(b15) CDR1, CDR2 and CDR3 are identical to the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 430
제 1 항(1) 및 (2)에 기재된 항체 가변 영역이, 하기 (c1)∼(c19)로부터 선택되는 어느 하나의 H쇄 CDR1, CDR2 및 CDR3의 조합을 포함하는 항체 가변 영역, 또는 이것과 기능적으로 동등한 항체 가변 영역인, 다중특이성 항원 결합 분자.
(c1) 제 1 항(1)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 40에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하고, 제 1 항(2)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 52에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다,
(c2) 제 1 항(1)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 40에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하고, 제 1 항(2)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 421에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다,
(c3) 제 1 항(1)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 40에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하고, 제 1 항(2)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 426에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다,
(c4) 제 1 항(1)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 40에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하고, 제 1 항(2)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 429에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다,
(c5) 제 1 항(1)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 40에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하고, 제 1 항(2)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 430에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다,
(c6) 제 1 항(1)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 197에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하고, 제 1 항(2)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 128에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다,
(c7) 제 1 항(1)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 206에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하고, 제 1 항(2)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 142에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다,
(c8) 제 1 항(1)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 206에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하고, 제 1 항(2)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 144에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다,
(c9) 제 1 항(1)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 206에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하고, 제 1 항(2)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 164에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다,
(c10) 제 1 항(1)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 206에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하고, 제 1 항(2)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 168에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다,
(c11) 제 1 항(1)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 211에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하고, 제 1 항(2)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 142에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다,
(c12) 제 1 항(1)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 211에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하고, 제 1 항(2)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 144에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다,
(c13) 제 1 항(1)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 211에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하고, 제 1 항(2)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 164에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다,
(c14) 제 1 항(1)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 211에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하고, 제 1 항(2)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 168에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다,
(c15) 제 1 항(1)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 215에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하고, 제 1 항(2)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 103에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다,
(c16) 제 1 항(1)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 215에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하고, 제 1 항(2)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 122에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다,
(c17) 제 1 항(1)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 215에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하고, 제 1 항(2)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 129에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다,
(c18) 제 1 항(1)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 215에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하고, 제 1 항(2)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 132에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다,
(c19) 제 1 항(1)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 215에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하고, 제 1 항(2)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 424에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다5. The method according to any one of claims 1 to 4,
The antibody variable region described in any one of (1) and (2) above is an antibody variable region comprising a combination of any one of H chain CDR1, CDR2 and CDR3 selected from (c1) to (c19) A multispecific antigen binding molecule that is a functionally equivalent antibody variable region.
(c1) CDR1, CDR2 and CDR3 contained in the antibody variable region described in (1) above are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 40, CDR2 and CDR3 contained in the antibody variable region described in SEQ ID NO: 52 are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions included in SEQ ID NO: 52,
(c2) CDR1, CDR2 and CDR3 contained in the antibody variable region described in (1) above are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 40, CDR2 and CDR3 contained in the antibody variable region described in SEQ ID NO: 421 are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions included in SEQ ID NO: 421,
(c3) CDR1, CDR2 and CDR3 contained in the antibody variable region described in (1) above are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 40, CDR2 and CDR3 contained in the antibody variable region described in SEQ ID NO: 426 are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions included in SEQ ID NO: 426,
(c4) the CDR1, CDR2 and CDR3 contained in the antibody variable region described in (1) above are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 40, CDR2 and CDR3 contained in the antibody variable region described in SEQ ID NO: 429 are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions included in SEQ ID NO: 429,
(c5) CDR1, CDR2 and CDR3 contained in the antibody variable region according to (1) above are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 40, CDR2 and CDR3 contained in the antibody variable region described in SEQ ID NO: 430 are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions included in SEQ ID NO: 430,
(c6) the CDR1, CDR2 and CDR3 contained in the antibody variable region described in (1) above are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 197, CDR2 and CDR3 contained in the antibody variable region described in SEQ ID NO: 128 are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions included in SEQ ID NO: 128,
(c7) CDR1, CDR2 and CDR3 contained in the antibody variable region described in (1) above are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 206, CDR2 and CDR3 contained in the antibody variable region described in SEQ ID NO: 142 are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions included in SEQ ID NO: 142,
(c8) CDR1, CDR2 and CDR3 contained in the antibody variable region described in (1) above are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 206, CDR2 and CDR3 contained in the antibody variable region described in SEQ ID NO: 144 are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions included in SEQ ID NO: 144,
(c9) the CDR1, CDR2 and CDR3 contained in the antibody variable region described in (1) above are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 206, CDR2 and CDR3 contained in the antibody variable region described in SEQ ID NO: 164 are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions included in SEQ ID NO: 164,
(c10) CDR1, CDR2 and CDR3 contained in the antibody variable region according to (1) above are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 206, CDR2 and CDR3 contained in the antibody variable region described in SEQ ID NO: 168 are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions included in SEQ ID NO: 168,
(c11) CDR1, CDR2 and CDR3 contained in the antibody variable region described in (1) above are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 211, CDR2 and CDR3 contained in the antibody variable region described in SEQ ID NO: 142 are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions included in SEQ ID NO: 142,
(c12) the CDR1, CDR2 and CDR3 contained in the antibody variable region described in (1) above are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 211, CDR2 and CDR3 contained in the antibody variable region described in SEQ ID NO: 144 are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions included in SEQ ID NO: 144,
(c13) the CDR1, CDR2 and CDR3 contained in the antibody variable region described in (1) above are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 211, CDR2 and CDR3 contained in the antibody variable region described in SEQ ID NO: 164 are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions included in SEQ ID NO: 164,
(c14) the CDR1, CDR2 and CDR3 contained in the antibody variable region described in (1) above are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 211, CDR2 and CDR3 contained in the antibody variable region described in SEQ ID NO: 168 are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions included in SEQ ID NO: 168,
(c15) CDR1, CDR2 and CDR3 contained in the antibody variable region described in (1) above are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 215, CDR2 and CDR3 contained in the antibody variable region described in SEQ ID NO: 103 are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions included in SEQ ID NO: 103,
(c16) The CDR1, CDR2 and CDR3 contained in the antibody variable region described in (1) above are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 215, CDR2 and CDR3 contained in the antibody variable region described in SEQ ID NO: 122 are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions included in SEQ ID NO: 122,
(c17) the CDR1, CDR2 and CDR3 contained in the antibody variable region described in (1) above are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 215, CDR2 and CDR3 contained in the antibody variable region described in SEQ ID NO: 129 are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions included in SEQ ID NO: 129,
(c18) CDR1, CDR2 and CDR3 contained in the antibody variable region described in (1) above are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 215, CDR2 and CDR3 contained in the antibody variable region described in SEQ ID NO: 132 are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions included in SEQ ID NO: 132,
(c19) The CDR1, CDR2 and CDR3 contained in the antibody variable region described in (1) above are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 215, CDR2, and CDR3 contained in the antibody variable region described in SEQ ID NO: 424 are the same as the amino acid sequences of the CDR1, CDR2, and CDR3 regions included in SEQ ID NO: 424
CDR1, CDR2 및 CDR3이, Kabat 넘버링에 기초하는 CDR1, CDR2 및 CDR3 영역인, 다중특이성 항원 결합 분자.8. The method according to any one of claims 5 to 7,
A multispecific antigen binding molecule wherein CDR1, CDR2 and CDR3 are regions of CDR1, CDR2 and CDR3 based on Kabat numbering.
제 1 항(1)에 기재된 항체 가변 영역이, 하기 (a1)∼(a5)로부터 선택되는 어느 하나의 H쇄 가변 영역을 포함하는 항체 가변 영역, 또는 이것과 기능적으로 동등한 항체 가변 영역인, 다중특이성 항원 결합 분자.
(a1) H쇄 가변 영역이, 서열번호: 40에 기재된 아미노산 서열이다
(a2) H쇄 가변 영역이, 서열번호: 197에 기재된 아미노산 서열이다
(a3) H쇄 가변 영역이, 서열번호: 206에 기재된 아미노산 서열이다
(a4) H쇄 가변 영역이, 서열번호: 211에 기재된 아미노산 서열이다
(a5) H쇄 가변 영역이, 서열번호: 215에 기재된 아미노산 서열이다5. The method according to any one of claims 1 to 4,
The antibody according to any one of claims 1 to 3, wherein the antibody variable region described in (1) is an antibody variable region comprising any one of the H chain variable regions selected from (a1) to (a5), or an antibody variable region functionally equivalent thereto Specific antigen binding molecule.
(a1) the H chain variable region is the amino acid sequence set forth in SEQ ID NO: 40
(a2) the H chain variable region is the amino acid sequence set forth in SEQ ID NO: 197
(a3) the H chain variable region is the amino acid sequence set forth in SEQ ID NO: 206
(a4) the H chain variable region is the amino acid sequence set forth in SEQ ID NO: 211
(a5) the H chain variable region is the amino acid sequence set forth in SEQ ID NO: 215
제 1 항(2)에 기재된 항체 가변 영역이, 하기 (b1)∼(b15)로부터 선택되는 어느 하나의 H쇄 가변 영역을 포함하는 항체 가변 영역, 또는 이것과 기능적으로 동등한 항체 가변 영역인, 다중특이성 항원 결합 분자.
(b1) H쇄 가변 영역이, 서열번호: 52에 기재된 아미노산 서열이다
(b2) H쇄 가변 영역이, 서열번호: 103에 기재된 아미노산 서열이다
(b3) H쇄 가변 영역이, 서열번호: 122에 기재된 아미노산 서열이다
(b4) H쇄 가변 영역이, 서열번호: 128에 기재된 아미노산 서열이다
(b5) H쇄 가변 영역이, 서열번호: 129에 기재된 아미노산 서열이다
(b6) H쇄 가변 영역이, 서열번호: 132에 기재된 아미노산 서열이다
(b7) H쇄 가변 영역이, 서열번호: 142에 기재된 아미노산 서열이다
(b8) H쇄 가변 영역이, 서열번호: 144에 기재된 아미노산 서열이다
(b9) H쇄 가변 영역이, 서열번호: 164에 기재된 아미노산 서열이다
(b10) H쇄 가변 영역이, 서열번호: 168에 기재된 아미노산 서열이다
(b11) H쇄 가변 영역이, 서열번호: 421에 기재된 아미노산 서열이다
(b12) H쇄 가변 영역이, 서열번호: 424에 기재된 아미노산 서열이다
(b13) H쇄 가변 영역이, 서열번호: 426에 기재된 아미노산 서열이다
(b14) H쇄 가변 영역이, 서열번호: 429에 기재된 아미노산 서열이다
(b15) H쇄 가변 영역이, 서열번호: 430에 기재된 아미노산 서열이다5. The method according to any one of claims 1 to 4,
The antibody according to any one of claims 1 to 3, wherein the antibody variable region described in (1) is an antibody variable region comprising any one of the H chain variable regions selected from (b1) to (b15), or an antibody variable region functionally equivalent thereto Specific antigen binding molecule.
(b1) the H chain variable region is the amino acid sequence set forth in SEQ ID NO: 52
(b2) the H chain variable region is the amino acid sequence set forth in SEQ ID NO: 103
(b3) the H chain variable region is the amino acid sequence set forth in SEQ ID NO: 122
(b4) the H chain variable region is the amino acid sequence set forth in SEQ ID NO: 128
(b5) the H chain variable region is the amino acid sequence set forth in SEQ ID NO: 129
(b6) the H chain variable region is the amino acid sequence set forth in SEQ ID NO: 132
(b7) the H chain variable region is the amino acid sequence set forth in SEQ ID NO: 142
(b8) the H chain variable region is the amino acid sequence set forth in SEQ ID NO: 144
(b9) the H chain variable region is the amino acid sequence set forth in SEQ ID NO: 164
(b10) the H chain variable region is the amino acid sequence set forth in SEQ ID NO: 168
(b11) the H chain variable region is the amino acid sequence set forth in SEQ ID NO: 421
(b12) the H chain variable region is the amino acid sequence set forth in SEQ ID NO: 424
(b13) the H chain variable region is the amino acid sequence set forth in SEQ ID NO: 426
(b14) the H chain variable region is the amino acid sequence set forth in SEQ ID NO: 429
(b15) the H chain variable region is the amino acid sequence set forth in SEQ ID NO: 430
제 1 항(1) 및 (2)에 기재된 항체 가변 영역이, 하기 (c1)∼(c19)로부터 선택되는 어느 하나의 H쇄 가변 영역의 조합을 포함하는 항체 가변 영역, 또는 이것과 기능적으로 동등한 항체 가변 영역인, 다중특이성 항원 결합 분자.
(c1) 제 1 항(1)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 40에 기재된 아미노산 서열이고, 제 1 항(2)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 52에 기재된 아미노산 서열이다,
(c2) 제 1 항(1)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 40에 기재된 아미노산 서열이고, 제 1 항(2)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 421에 기재된 아미노산 서열이다,
(c3) 제 1 항(1)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 40에 기재된 아미노산 서열이고, 제 1 항(2)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 426에 기재된 아미노산 서열이다,
(c4) 제 1 항(1)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 40에 기재된 아미노산 서열이고, 제 1 항(2)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 429에 기재된 아미노산 서열이다,
(c5) 제 1 항(1)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 40에 기재된 아미노산 서열이고, 제 1 항(2)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 430에 기재된 아미노산 서열이다,
(c6) 제 1 항(1)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 197에 기재된 아미노산 서열이고, 제 1 항(2)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 128에 기재된 아미노산 서열이다,
(c7) 제 1 항(1)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 206에 기재된 아미노산 서열이고, 제 1 항(2)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 142에 기재된 아미노산 서열이다,
(c8) 제 1 항(1)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 206에 기재된 아미노산 서열이고, 제 1 항(2)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 144에 기재된 아미노산 서열이다,
(c9) 제 1 항(1)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 206에 기재된 아미노산 서열이고, 제 1 항(2)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 164에 기재된 아미노산 서열이다,
(c10) 제 1 항(1)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 206에 기재된 아미노산 서열이고, 제 1 항(2)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 168에 기재된 아미노산 서열이다,
(c11) 제 1 항(1)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 211에 기재된 아미노산 서열이고, 제 1 항(2)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 142에 기재된 아미노산 서열이다,
(c12) 제 1 항(1)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 211에 기재된 아미노산 서열이고, 제 1 항(2)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 144에 기재된 아미노산 서열이다,
(c13) 제 1 항(1)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 211에 기재된 아미노산 서열이고, 제 1 항(2)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 164에 기재된 아미노산 서열이다,
(c14) 제 1 항(1)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 211에 기재된 아미노산 서열이고, 제 1 항(2)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 168에 기재된 아미노산 서열이다,
(c15) 제 1 항(1)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 215에 기재된 아미노산 서열이고, 제 1 항(2)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 103에 기재된 아미노산 서열이다,
(c16) 제 1 항(1)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 215에 기재된 아미노산 서열이고, 제 1 항(2)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 122에 기재된 아미노산 서열이다,
(c17) 제 1 항(1)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 215에 기재된 아미노산 서열이고, 제 1 항(2)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 129에 기재된 아미노산 서열이다,
(c18) 제 1 항(1)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 215에 기재된 아미노산 서열이고, 제 1 항(2)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 132에 기재된 아미노산 서열이다,
(c19) 제 1 항(1)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 215에 기재된 아미노산 서열이고, 제 1 항(2)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 424에 기재된 아미노산 서열이다5. The method according to any one of claims 1 to 4,
The antibody variable region described in any one of (1) and (2) above, wherein the antibody variable region comprises any combination of H chain variable regions selected from (c1) to (c19) Multispecific antigen binding molecule that is an antibody variable region.
(c1) The antibody according to (1), wherein the H chain variable region contained in the antibody variable region is the amino acid sequence set forth in SEQ ID NO: 40 and the H chain variable included in the antibody variable region according to Item (2) Wherein the region is the amino acid sequence set forth in SEQ ID NO: 52,
(c2) The antibody according to (1), wherein the H chain variable region contained in the antibody variable region is the amino acid sequence set forth in SEQ ID NO: 40, and the H chain variable Region is the amino acid sequence set forth in SEQ ID NO: 421,
(c3) The antibody according to (1), wherein the H chain variable region contained in the antibody variable region is the amino acid sequence set forth in SEQ ID NO: 40, and the H chain variable included in the antibody variable region according to Item (2) Region is the amino acid sequence set forth in SEQ ID NO: 426,
(c4) The antibody according to (1), wherein the H chain variable region contained in the antibody variable region is the amino acid sequence set forth in SEQ ID NO: 40, and the H chain variable included in the antibody variable region according to Item (2) Region is the amino acid sequence set forth in SEQ ID NO: 429,
(c5) The antibody according to (1), wherein the H chain variable region contained in the antibody variable region is the amino acid sequence according to SEQ ID NO: 40, and the H chain variable included in the antibody variable region according to Item (2) Region is the amino acid sequence set forth in SEQ ID NO: 430,
(c6) The antibody according to (1), wherein the H chain variable region contained in the antibody variable region is the amino acid sequence set forth in SEQ ID NO: 197, and the H chain variable included in the antibody variable region described in the item (2) Region is the amino acid sequence set forth in SEQ ID NO: 128,
(c7) The antibody according to (1), wherein the H chain variable region contained in the antibody variable region is the amino acid sequence set forth in SEQ ID NO: 206, and the H chain variable included in the antibody variable region described in (1) Wherein the region is the amino acid sequence set forth in SEQ ID NO: 142,
(c8) The antibody according to (1), wherein the H chain variable region contained in the antibody variable region is the amino acid sequence set forth in SEQ ID NO: 206, and the H chain variable Region is the amino acid sequence set forth in SEQ ID NO: 144,
(c9) The antibody according to (1), wherein the H chain variable region contained in the antibody variable region is the amino acid sequence according to SEQ ID NO: 206, and the H chain variable included in the antibody variable region according to Item (2) 164 is the amino acid sequence shown in SEQ ID NO: 164,
(c10) The antibody according to (1), wherein the H chain variable region contained in the antibody variable region is the amino acid sequence set forth in SEQ ID NO: 206, and the H chain variable included in the antibody variable region described in (1) Region is the amino acid sequence set forth in SEQ ID NO: 168,
(c11) The antibody according to (1), wherein the H chain variable region contained in the antibody variable region is the amino acid sequence set forth in SEQ ID NO: 211, and the H chain variable included in the antibody variable region according to Item (2) Wherein the region is the amino acid sequence set forth in SEQ ID NO: 142,
(c12) The antibody according to (1), wherein the H chain variable region contained in the antibody variable region is the amino acid sequence set forth in SEQ ID NO: 211, and the H chain variable included in the antibody variable region described in (1) Region is the amino acid sequence set forth in SEQ ID NO: 144,
(c13) The antibody according to (1), wherein the H chain variable region contained in the antibody variable region is the amino acid sequence set forth in SEQ ID NO: 211, and the H chain variable included in the antibody variable region according to Item (2) 164 is the amino acid sequence shown in SEQ ID NO: 164,
(c14) The antibody according to (1), wherein the H chain variable region contained in the antibody variable region is the amino acid sequence set forth in SEQ ID NO: 211, and the H chain variable included in the antibody variable region according to Item (2) Region is the amino acid sequence set forth in SEQ ID NO: 168,
(c15) The antibody according to (1), wherein the H chain variable region contained in the antibody variable region is the amino acid sequence set forth in SEQ ID NO: 215, and the H chain variable included in the antibody variable region according to Item (2) 103 is the amino acid sequence shown in SEQ ID NO: 103,
(c16) The antibody according to (1), wherein the H chain variable region contained in the antibody variable region is the amino acid sequence set forth in SEQ ID NO: 215, and the H chain variable included in the antibody variable region described in the item (2) Region is the amino acid sequence set forth in SEQ ID NO: 122,
(c17) The antibody according to (1), wherein the H chain variable region contained in the antibody variable region is the amino acid sequence set forth in SEQ ID NO: 215, and the H chain variable included in the antibody variable region according to Item (2) Region is the amino acid sequence set forth in SEQ ID NO: 129,
(c18) The antibody according to (1), wherein the H chain variable region contained in the antibody variable region is the amino acid sequence set forth in SEQ ID NO: 215, and the H chain variable included in the antibody variable region described in (1) Region is the amino acid sequence set forth in SEQ ID NO: 132,
(c19) The antibody according to (1), wherein the H chain variable region contained in the antibody variable region is the amino acid sequence set forth in SEQ ID NO: 215, and the H chain variable included in the antibody variable region described in (1) Region is the amino acid sequence set forth in SEQ ID NO: 424
제 1 항에 기재된 공통 L쇄가, 하기 (d1)∼(d11)로부터 선택되는 어느 하나의 CDR1, CDR2 및 CDR3의 조합을 포함하는 공통 L쇄, 또는 이것과 기능적으로 동등한 공통 L쇄인, 다중특이성 항원 결합 분자.
(d1) CDR1, CDR2 및 CDR3이, 서열번호: 53에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다
(d2) CDR1, CDR2 및 CDR3이, 서열번호: 223에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다
(d3) CDR1, CDR2 및 CDR3이, 서열번호: 299에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다
(d4) CDR1, CDR2 및 CDR3이, 서열번호: 301에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다
(d5) CDR1, CDR2 및 CDR3이, 서열번호: 302에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다
(d6) CDR1, CDR2 및 CDR3이, 서열번호: 304에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다
(d7) CDR1, CDR2 및 CDR3이, 서열번호: 306에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다
(d8) CDR1, CDR2 및 CDR3이, 서열번호: 307에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다
(d9) CDR1, CDR2 및 CDR3이, 서열번호: 309에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다
(d10) CDR1, CDR2 및 CDR3이, 서열번호: 310에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다
(d11) CDR1, CDR2 및 CDR3이, 서열번호: 319에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다12. The method according to any one of claims 1 to 11,
The method according to any one of claims 1 to 4, wherein the common L chain is a common L chain comprising a combination of any one of CDR1, CDR2 and CDR3 selected from (d1) to (d11) below, or a common L chain functionally equivalent thereto, Antigen binding molecule.
(d1) CDR1, CDR2 and CDR3 are identical to the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 53
(d2) CDR1, CDR2 and CDR3 are identical to the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 223
(d3) CDR1, CDR2 and CDR3 are identical to the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 299
(d4) CDR1, CDR2 and CDR3 are identical to the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 301
(d5) CDR1, CDR2 and CDR3 are identical to the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 302
(d6) CDR1, CDR2 and CDR3 are identical to the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 304
(d7) CDR1, CDR2 and CDR3 are identical to the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 306
(d8) CDR1, CDR2 and CDR3 are identical to the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 307
(d9) CDR1, CDR2 and CDR3 are identical to the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 309
(d10) CDR1, CDR2 and CDR3 are identical to the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 310
(d11) CDR1, CDR2 and CDR3 are identical to the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 319
제 1 항에 기재된 L쇄 가변 영역이, 하기 (d1)∼(d11)로부터 선택되는 어느 하나의 L쇄 아미노산 서열의 가변 영역인, 다중특이성 항원 결합 분자.
(d1) 서열번호: 53에 기재된 아미노산 서열로 이루어지는 L쇄
(d2) 서열번호: 223에 기재된 아미노산 서열로 이루어지는 L쇄
(d3) 서열번호: 299에 기재된 아미노산 서열로 이루어지는 L쇄
(d4) 서열번호: 301에 기재된 아미노산 서열로 이루어지는 L쇄
(d5) 서열번호: 302에 기재된 아미노산 서열로 이루어지는 L쇄
(d6) 서열번호: 304에 기재된 아미노산 서열로 이루어지는 L쇄
(d7) 서열번호: 306에 기재된 아미노산 서열로 이루어지는 L쇄
(d8) 서열번호: 307에 기재된 아미노산 서열로 이루어지는 L쇄
(d9) 서열번호: 309에 기재된 아미노산 서열로 이루어지는 L쇄
(d10) 서열번호: 310에 기재된 아미노산 서열로 이루어지는 L쇄
(d11) 서열번호: 319에 기재된 아미노산 서열로 이루어지는 L쇄12. The method according to any one of claims 1 to 11,
The multispecific antigen binding molecule according to claim 1, wherein the L chain variable region is a variable region of any one of the L chain amino acid sequences selected from (d1) to (d11).
(d1) an L chain comprising the amino acid sequence of SEQ ID NO: 53
(d2) an L chain comprising the amino acid sequence of SEQ ID NO: 223
(d3) an L chain comprising the amino acid sequence of SEQ ID NO: 299
(d4) an L chain comprising the amino acid sequence of SEQ ID NO: 301
(d5) an L chain comprising the amino acid sequence of SEQ ID NO: 302
(d6) an L chain comprising the amino acid sequence of SEQ ID NO: 304
(d7) an L chain comprising the amino acid sequence of SEQ ID NO: 306
(d8) an L chain comprising the amino acid sequence of SEQ ID NO: 307
(d9) an L chain comprising the amino acid sequence of SEQ ID NO: 309
(d10) an L chain comprising the amino acid sequence of SEQ ID NO: 310
(d11) an L chain comprising the amino acid sequence of SEQ ID NO: 319
제 1 항(1) 및 (2)에 기재된 항체 가변 영역, 및, 공통 L쇄 가변 영역이, 하기 (e1)∼(e25)로부터 선택되는 어느 하나의 H쇄 CDR1, CDR2 및 CDR3, 및, L쇄 CDR1, CDR2 및 CDR3의 조합을 포함하는 항체 가변 영역, 또는 이것과 기능적으로 동등한 항체 가변 영역인, 다중특이성 항원 결합 분자.
(e1) 제 1 항(1)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 197에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하고, 제 1 항(2)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 128에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하며, 공통 L쇄의 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 53에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다,
(e2) 제 1 항(1)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 197에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하고, 제 1 항(2)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 128에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하며, 공통 L쇄의 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 299에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다,
(e3) 제 1 항(1)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 197에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하고, 제 1 항(2)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 128에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하며, 공통 L쇄의 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 310에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다,
(e4) 제 1 항(1)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 197에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하고, 제 1 항(2)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 128에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하며, 공통 L쇄의 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 319에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다,
(e5) 제 1 항(1)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 206에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하고, 제 1 항(2)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 142에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하며, 공통 L쇄의 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 223에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다,
(e6) 제 1 항(1)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 206에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하고, 제 1 항(2)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 144에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하며, 공통 L쇄의 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 223에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다,
(e7) 제 1 항(1)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 206에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하고, 제 1 항(2)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 164에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하며, 공통 L쇄의 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 223에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다,
(e8) 제 1 항(1)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 206에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하고, 제 1 항(2)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 168에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하며, 공통 L쇄의 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 223에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다,
(e9) 제 1 항(1)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 211에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하고, 제 1 항(2)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 142에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하며, 공통 L쇄의 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 223에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다,
(e10) 제 1 항(1)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 211에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하고, 제 1 항(2)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 142에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하며, 공통 L쇄의 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 299에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다,
(e11) 제 1 항(1)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 211에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하고, 제 1 항(2)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 144에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하며, 공통 L쇄의 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 223에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다,
(e12) 제 1 항(1)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 211에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하고, 제 1 항(2)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 164에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하며, 공통 L쇄의 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 223에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다,
(e13) 제 1 항(1)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 211에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하고, 제 1 항(2)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 168에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하며, 공통 L쇄의 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 223에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다,
(e14) 제 1 항(1)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 215에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하고, 제 1 항(2)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 103에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하며, 공통 L쇄의 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 53에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다,
(e15) 제 1 항(1)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 215에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하고, 제 1 항(2)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 103에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하며, 공통 L쇄의 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 299에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다,
(e16) 제 1 항(1)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 215에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하고, 제 1 항(2)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 103에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하며, 공통 L쇄의 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 301에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다,
(e17) 제 1 항(1)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 215에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하고, 제 1 항(2)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 103에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하며, 공통 L쇄의 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 302에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다,
(e18) 제 1 항(1)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 215에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하고, 제 1 항(2)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 103에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하며, 공통 L쇄의 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 304에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다,
(e19) 제 1 항(1)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 215에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하고, 제 1 항(2)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 103에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하며, 공통 L쇄의 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 306에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다,
(e20) 제 1 항(1)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 215에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하고, 제 1 항(2)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 103에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하며, 공통 L쇄의 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 307에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다,
(e21) 제 1 항(1)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 215에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하고, 제 1 항(2)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 103에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하며, 공통 L쇄의 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 309에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다,
(e22) 제 1 항(1)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 215에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하고, 제 1 항(2)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 122에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하며, 공통 L쇄의 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 53에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다,
(e23) 제 1 항(1)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 215에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하고, 제 1 항(2)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 129에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하며, 공통 L쇄의 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 53에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다,
(e24) 제 1 항(1)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 215에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하고, 제 1 항(2)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 132에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하며, 공통 L쇄의 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 53에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다,
(e25) 제 1 항(1)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 215에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하고, 제 1 항(2)에 기재된 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 424에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하며, 공통 L쇄의 항체 가변 영역에 포함되는 CDR1, CDR2 및 CDR3이, 서열번호: 53에 포함되는 CDR1, CDR2 및 CDR3 영역의 아미노산 서열과 동일하다5. The method according to any one of claims 1 to 4,
The antibody variable region and the common L chain variable region according to any one of Items (1) and (2) are any one of H chain CDR1, CDR2 and CDR3 selected from the following (e1) to (e25) A multispecific antigen binding molecule that is an antibody variable region comprising a combination of chain CDR1, CDR2 and CDR3, or an antibody variable region functionally equivalent thereto.
(e1) CDR1, CDR2 and CDR3 contained in the antibody variable region described in (1) above are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 197, CDR2 and CDR3 contained in the antibody variable region described in SEQ ID NO: 128 are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions included in SEQ ID NO: 128, and CDR1, CDR2 and CDR3 Is the same as the amino acid sequence of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 53,
(e2) CDR1, CDR2 and CDR3 contained in the antibody variable region described in (1) above are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 197, CDR2 and CDR3 contained in the antibody variable region described in SEQ ID NO: 128 are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions included in SEQ ID NO: 128, and CDR1, CDR2 and CDR3 Is the same as the amino acid sequence of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 299,
(e3) CDR1, CDR2 and CDR3 contained in the antibody variable region described in (1) above are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 197, CDR2 and CDR3 contained in the antibody variable region described in SEQ ID NO: 128 are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions included in SEQ ID NO: 128, and CDR1, CDR2 and CDR3 Is the same as the amino acid sequence of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 310,
(e4) CDR1, CDR2 and CDR3 contained in the antibody variable region described in (1) above are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 197, CDR2 and CDR3 contained in the antibody variable region described in SEQ ID NO: 128 are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions included in SEQ ID NO: 128, and CDR1, CDR2 and CDR3 Is the same as the amino acid sequence of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 319,
(e5) CDR1, CDR2 and CDR3 contained in the antibody variable region according to (1) above are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 206, CDR2 and CDR3 contained in the antibody variable region described in SEQ ID NO: 142 are identical to the amino acid sequences of the CDR1, CDR2 and CDR3 regions included in SEQ ID NO: 142, and CDR1, CDR2 and CDR3 Is the same as the amino acid sequence of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 223,
(e6) CDR1, CDR2 and CDR3 contained in the antibody variable region according to (1) above are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 206, CDR2 and CDR3 contained in the antibody variable region described in SEQ ID NO: 144 are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions included in SEQ ID NO: 144, and CDR1, CDR2 and CDR3 Is the same as the amino acid sequence of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 223,
(e7) CDR1, CDR2 and CDR3 contained in the antibody variable region described in (1) above are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 206, CDR2 and CDR3 contained in the antibody variable region described in SEQ ID NO: 164 are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions included in SEQ ID NO: 164, and CDR1, CDR2 and CDR3 Is the same as the amino acid sequence of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 223,
(e8) CDR1, CDR2 and CDR3 contained in the antibody variable region described in (1) above are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 206, CDR2 and CDR3 contained in the antibody variable region described in SEQ ID NO: 168 are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions included in SEQ ID NO: 168, and CDR1, CDR2 and CDR3 Is the same as the amino acid sequence of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 223,
(e9) CDR1, CDR2 and CDR3 contained in the antibody variable region described in (1) above are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 211, CDR2 and CDR3 contained in the antibody variable region described in SEQ ID NO: 142 are identical to the amino acid sequences of the CDR1, CDR2 and CDR3 regions included in SEQ ID NO: 142, and CDR1, CDR2 and CDR3 Is the same as the amino acid sequence of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 223,
(e10) CDR1, CDR2 and CDR3 contained in the antibody variable region described in (1) above are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 211, CDR2 and CDR3 contained in the antibody variable region described in SEQ ID NO: 142 are identical to the amino acid sequences of the CDR1, CDR2 and CDR3 regions included in SEQ ID NO: 142, and CDR1, CDR2 and CDR3 Is the same as the amino acid sequence of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 299,
(e11) CDR1, CDR2 and CDR3 contained in the antibody variable region described in (1) above are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 211, CDR2 and CDR3 contained in the antibody variable region described in SEQ ID NO: 144 are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions included in SEQ ID NO: 144, and CDR1, CDR2 and CDR3 Is the same as the amino acid sequence of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 223,
(e12) CDR1, CDR2 and CDR3 contained in the antibody variable region described in (1) above are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 211, CDR2 and CDR3 contained in the antibody variable region described in SEQ ID NO: 164 are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions included in SEQ ID NO: 164, and CDR1, CDR2 and CDR3 Is the same as the amino acid sequence of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 223,
(e13) CDR1, CDR2 and CDR3 contained in the antibody variable region described in (1) above are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 211, CDR2 and CDR3 contained in the antibody variable region described in SEQ ID NO: 168 are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions included in SEQ ID NO: 168, and CDR1, CDR2 and CDR3 Is the same as the amino acid sequence of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 223,
(e14) CDR1, CDR2 and CDR3 contained in the antibody variable region described in (1) above are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 215, CDR2 and CDR3 contained in the antibody variable region described in SEQ ID NO: 103 are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions included in SEQ ID NO: 103, and CDR1, CDR2 and CDR3 Is the same as the amino acid sequence of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 53,
(e15) The CDR1, CDR2 and CDR3 contained in the antibody variable region described in (1) above are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 215, CDR2 and CDR3 contained in the antibody variable region described in SEQ ID NO: 103 are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions included in SEQ ID NO: 103, and CDR1, CDR2 and CDR3 Is the same as the amino acid sequence of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 299,
(e16) CDR1, CDR2 and CDR3 contained in the antibody variable region according to (1) above are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 215, CDR2 and CDR3 contained in the antibody variable region described in SEQ ID NO: 103 are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions included in SEQ ID NO: 103, and CDR1, CDR2 and CDR3 Is the same as the amino acid sequence of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 301,
(e17) The CDR1, CDR2 and CDR3 contained in the antibody variable region described in (1) above are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 215, CDR2 and CDR3 contained in the antibody variable region described in SEQ ID NO: 103 are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions included in SEQ ID NO: 103, and CDR1, CDR2 and CDR3 Is the same as the amino acid sequence of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 302,
(e18) the CDR1, CDR2 and CDR3 contained in the antibody variable region described in (1) above are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 215, CDR2 and CDR3 contained in the antibody variable region described in SEQ ID NO: 103 are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions included in SEQ ID NO: 103, and CDR1, CDR2 and CDR3 Is the same as the amino acid sequence of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 304,
(e19) CDR1, CDR2 and CDR3 contained in the antibody variable region described in (1) above are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 215, CDR2 and CDR3 contained in the antibody variable region described in SEQ ID NO: 103 are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions included in SEQ ID NO: 103, and CDR1, CDR2 and CDR3 Is the same as the amino acid sequence of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 306,
(e20) CDR1, CDR2 and CDR3 contained in the antibody variable region described in (1) above are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 215, CDR2 and CDR3 contained in the antibody variable region described in SEQ ID NO: 103 are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions included in SEQ ID NO: 103, and CDR1, CDR2 and CDR3 Is the same as the amino acid sequence of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 307,
(e21) The CDR1, CDR2 and CDR3 contained in the antibody variable region described in (1) above are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 215, CDR2 and CDR3 contained in the antibody variable region described in SEQ ID NO: 103 are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions included in SEQ ID NO: 103, and CDR1, CDR2 and CDR3 Is the same as the amino acid sequence of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 309,
(e22) CDR1, CDR2 and CDR3 contained in the antibody variable region according to (1) above are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 215, CDR2 and CDR3 contained in the antibody variable region described in SEQ ID NO: 122 are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions included in SEQ ID NO: 122, and CDR1, CDR2 and CDR3 Is the same as the amino acid sequence of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 53,
(e23) CDR1, CDR2 and CDR3 contained in the antibody variable region according to (1) above are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 215, CDR2 and CDR3 contained in the antibody variable region described in SEQ ID NO: 129 are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions included in SEQ ID NO: 129, and CDR1, CDR2 and CDR3 Is the same as the amino acid sequence of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 53,
(e24) CDR1, CDR2 and CDR3 contained in the antibody variable region according to (1) above are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 215, CDR2 and CDR3 contained in the antibody variable region described in SEQ ID NO: 132 are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions included in SEQ ID NO: 132, and CDR1, CDR2 and CDR3 Is the same as the amino acid sequence of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 53,
(e25) CDR1, CDR2 and CDR3 contained in the antibody variable region described in (1) above are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 215, CDR2 and CDR3 contained in the antibody variable region described in SEQ ID NO: 424 are the same as the amino acid sequences of the CDR1, CDR2 and CDR3 regions included in SEQ ID NO: 424, and CDR1, CDR2 and CDR3 Is the same as the amino acid sequence of the CDR1, CDR2 and CDR3 regions contained in SEQ ID NO: 53
제 1 항(1) 및 (2)에 기재된 항체 가변 영역, 및, 공통 L쇄 가변 영역이, 하기 (f1)∼(f26)으로부터 선택되는 어느 하나의 가변 영역의 조합을 포함하는 항체 가변 영역, 또는 이것과 기능적으로 동등한 항체 가변 영역인, 다중특이성 항원 결합 분자.
(f1) 제 1 항(1)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 197에 기재된 아미노산 서열과 동일하고, 제 1 항(2)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 128에 기재된 아미노산 서열과 동일하며, 공통 L쇄의 항체 가변 영역이, 서열번호: 53에 포함되는 가변 영역의 아미노산 서열과 동일하다,
(f2) 제 1 항(1)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 197에 기재된 아미노산 서열과 동일하고, 제 1 항(2)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 128에 기재된 아미노산 서열과 동일하며, 공통 L쇄의 항체 가변 영역이, 서열번호: 299에 포함되는 가변 영역의 아미노산 서열과 동일하다,
(f3) 제 1 항(1)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 197에 기재된 아미노산 서열과 동일하고, 제 1 항(2)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 128에 기재된 아미노산 서열과 동일하며, 공통 L쇄의 항체 가변 영역이, 서열번호: 310에 포함되는 가변 영역의 아미노산 서열과 동일하다,
(f4) 제 1 항(1)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 197에 기재된 아미노산 서열과 동일하고, 제 1 항(2)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 128에 기재된 아미노산 서열과 동일하며, 공통 L쇄의 항체 가변 영역이, 서열번호: 319에 포함되는 가변 영역의 아미노산 서열과 동일하다,
(f5) 제 1 항(1)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 206에 기재된 아미노산 서열과 동일하고, 제 1 항(2)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 142에 기재된 아미노산 서열과 동일하며, 공통 L쇄의 항체 가변 영역이, 서열번호: 223에 포함되는 가변 영역의 아미노산 서열과 동일하다,
(f6) 제 1 항(1)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 206에 기재된 아미노산 서열과 동일하고, 제 1 항(2)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 144에 기재된 아미노산 서열과 동일하며, 공통 L쇄의 항체 가변 영역이, 서열번호: 223에 포함되는 가변 영역의 아미노산 서열과 동일하다,
(f7) 제 1 항(1)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 206에 기재된 아미노산 서열과 동일하고, 제 1 항(2)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 164에 기재된 아미노산 서열과 동일하며, 공통 L쇄의 항체 가변 영역이, 서열번호: 223에 포함되는 가변 영역의 아미노산 서열과 동일하다,
(f8) 제 1 항(1)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 206에 기재된 아미노산 서열과 동일하고, 제 1 항(2)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 168에 기재된 아미노산 서열과 동일하며, 공통 L쇄의 항체 가변 영역이, 서열번호: 223에 포함되는 가변 영역의 아미노산 서열과 동일하다,
(f9) 제 1 항(1)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 211에 기재된 아미노산 서열과 동일하고, 제 1 항(2)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 142에 기재된 아미노산 서열과 동일하며, 공통 L쇄의 항체 가변 영역이, 서열번호: 223에 포함되는 가변 영역의 아미노산 서열과 동일하다,
(f10) 제 1 항(1)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 211에 기재된 아미노산 서열과 동일하고, 제 1 항(2)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 142에 기재된 아미노산 서열과 동일하며, 공통 L쇄의 항체 가변 영역이, 서열번호: 299에 포함되는 가변 영역의 아미노산 서열과 동일하다,
(f11) 제 1 항(1)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 211에 기재된 아미노산 서열과 동일하고, 제 1 항(2)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 144에 기재된 아미노산 서열과 동일하며, 공통 L쇄의 항체 가변 영역이, 서열번호: 223에 포함되는 가변 영역의 아미노산 서열과 동일하다,
(f12) 제 1 항(1)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 211에 기재된 아미노산 서열과 동일하고, 제 1 항(2)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 164에 기재된 아미노산 서열과 동일하며, 공통 L쇄의 항체 가변 영역이, 서열번호: 223에 포함되는 가변 영역의 아미노산 서열과 동일하다,
(f13) 제 1 항(1)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 211에 기재된 아미노산 서열과 동일하고, 제 1 항(2)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 168에 기재된 아미노산 서열과 동일하며, 공통 L쇄의 항체 가변 영역이, 서열번호: 223에 포함되는 가변 영역의 아미노산 서열과 동일하다,
(f14) 제 1 항(1)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 215에 기재된 아미노산 서열과 동일하고, 제 1 항(2)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 103에 기재된 아미노산 서열과 동일하며, 공통 L쇄의 항체 가변 영역이, 서열번호: 53에 포함되는 가변 영역의 아미노산 서열과 동일하다,
(f15) 제 1 항(1)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 215에 기재된 아미노산 서열과 동일하고, 제 1 항(2)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 103에 기재된 아미노산 서열과 동일하며, 공통 L쇄의 항체 가변 영역이, 서열번호: 299에 포함되는 가변 영역의 아미노산 서열과 동일하다,
(f16) 제 1 항(1)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 215에 기재된 아미노산 서열과 동일하고, 제 1 항(2)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 103에 기재된 아미노산 서열과 동일하며, 공통 L쇄의 항체 가변 영역이, 서열번호: 301에 포함되는 가변 영역의 아미노산 서열과 동일하다,
(f17) 제 1 항(1)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 215에 기재된 아미노산 서열과 동일하고, 제 1 항(2)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 103에 기재된 아미노산 서열과 동일하며, 공통 L쇄의 항체 가변 영역이, 서열번호: 302에 포함되는 가변 영역의 아미노산 서열과 동일하다,
(f18) 제 1 항(1)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 215에 기재된 아미노산 서열과 동일하고, 제 1 항(2)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 103에 기재된 아미노산 서열과 동일하며, 공통 L쇄의 항체 가변 영역이, 서열번호: 304에 포함되는 가변 영역의 아미노산 서열과 동일하다,
(f19) 제 1 항(1)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 215에 기재된 아미노산 서열과 동일하고, 제 1 항(2)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 103에 기재된 아미노산 서열과 동일하며, 공통 L쇄의 항체 가변 영역이, 서열번호: 306에 포함되는 가변 영역의 아미노산 서열과 동일하다,
(f20) 제 1 항(1)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 215에 기재된 아미노산 서열과 동일하고, 제 1 항(2)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 103에 기재된 아미노산 서열과 동일하며, 공통 L쇄의 항체 가변 영역이, 서열번호: 307에 포함되는 가변 영역의 아미노산 서열과 동일하다,
(f21) 제 1 항(1)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 215에 기재된 아미노산 서열과 동일하고, 제 1 항(2)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 103에 기재된 아미노산 서열과 동일하며, 공통 L쇄의 항체 가변 영역이, 서열번호: 309에 포함되는 가변 영역의 아미노산 서열과 동일하다,
(f22) 제 1 항(1)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 215에 기재된 아미노산 서열과 동일하고, 제 1 항(2)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 122에 기재된 아미노산 서열과 동일하며, 공통 L쇄의 항체 가변 영역이, 서열번호: 53에 포함되는 가변 영역의 아미노산 서열과 동일하다,
(f23) 제 1 항(1)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 215에 기재된 아미노산 서열과 동일하고, 제 1 항(2)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 129에 기재된 아미노산 서열과 동일하며, 공통 L쇄의 항체 가변 영역이, 서열번호: 53에 포함되는 가변 영역의 아미노산 서열과 동일하다,
(f24) 제 1 항(1)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 215에 기재된 아미노산 서열과 동일하고, 제 1 항(2)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 132에 기재된 아미노산 서열과 동일하며, 공통 L쇄의 항체 가변 영역이, 서열번호: 53에 포함되는 가변 영역의 아미노산 서열과 동일하다,
(f25) 제 1 항(1)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 215에 기재된 아미노산 서열과 동일하고, 제 1 항(2)에 기재된 항체 가변 영역에 포함되는 H쇄 가변 영역이, 서열번호: 424에 기재된 아미노산 서열과 동일하며, 공통 L쇄의 항체 가변 영역이, 서열번호: 53에 포함되는 가변 영역의 아미노산 서열과 동일하다
(f26) (f1)∼(f25) 중 어느 하나에 기재된 다중특이성 항원 결합 분자가 결합하는 글리피칸 3 및 T 세포 수용체 복합체 상의 에피토프와 각각 중복되는 에피토프에 결합하는 다중특이성 항원 결합 분자이고, 공통 L쇄를 갖는다5. The method according to any one of claims 1 to 4,
An antibody variable region comprising the combination of any one of the variable regions selected from the following (f1) to (f26), the antibody variable region and the common L chain variable region according to any one of Items (1) and (2) Or an antibody variable region functionally equivalent thereto.
(f1) the H chain variable region contained in the antibody variable region described in (1) above is the same as the amino acid sequence described in SEQ ID NO: 197 and the H chain variable region included in the antibody variable region described in (1) The chain variable region is the same as the amino acid sequence shown in SEQ ID NO: 128, and the common L chain antibody variable region is the same as the amino acid sequence of the variable region included in SEQ ID NO: 53,
(f2) the H chain variable region contained in the antibody variable region described in (1) above is the same as the amino acid sequence described in SEQ ID NO: 197, and the H chain variable region included in the antibody variable region described in (1) Chain variable region is the same as the amino acid sequence shown in SEQ ID NO: 128, and the common L chain antibody variable region is the same as the amino acid sequence of the variable region included in SEQ ID NO: 299,
(f3) The H chain variable region included in the antibody variable region described in (1) above is the same as the amino acid sequence described in SEQ ID NO: 197, and the H chain variable region included in the antibody variable region described in (1) The chain variable region is the same as the amino acid sequence shown in SEQ ID NO: 128 and the common L chain antibody variable region is the same as the amino acid sequence of the variable region included in SEQ ID NO: 310,
(f4) the H chain variable region contained in the antibody variable region described in (1) above is the same as the amino acid sequence described in SEQ ID NO: 197, and the H chain variable region included in the antibody variable region described in (1) 128, and the antibody variable region of the common L chain is the same as the amino acid sequence of the variable region contained in SEQ ID NO: 319. The amino acid sequence of SEQ ID NO:
(f5) The antibody according to (1), wherein the H chain variable region contained in the antibody variable region is the same as the amino acid sequence described in SEQ ID NO: 206, and the H The antibody variable region of the common L chain is the same as the amino acid sequence of the variable region contained in SEQ ID NO:
(f6) The antibody according to (1), wherein the H chain variable region contained in the antibody variable region is the same as the amino acid sequence described in SEQ ID NO: 206, and the H The antibody variable region of the common L chain is the same as the amino acid sequence of the variable region contained in SEQ ID NO:
(f7) The antibody according to (1), wherein the H chain variable region contained in the antibody variable region is the same as the amino acid sequence set forth in SEQ ID NO: 206, and the H 164, and the antibody variable region of the common L chain is the same as the amino acid sequence of the variable region contained in SEQ ID NO: 223, and the antibody variable region of the common L chain is the same as the amino acid sequence of the variable region contained in SEQ ID NO:
(f8) The antibody according to (1), wherein the H chain variable region contained in the antibody variable region is the same as the amino acid sequence set forth in SEQ ID NO: 206, and the H Chain variable region is the same as the amino acid sequence shown in SEQ ID NO: 168 and the common L chain antibody variable region is the same as the amino acid sequence of the variable region included in SEQ ID NO: 223,
(f9) The antibody according to (1), wherein the H chain variable region contained in the antibody variable region is the same as the amino acid sequence described in SEQ ID NO: 211, and the H The antibody variable region of the common L chain is the same as the amino acid sequence of the variable region contained in SEQ ID NO:
(f10) the H chain variable region included in the antibody variable region described in (1) above is the same as the amino acid sequence described in SEQ ID NO: 211, and the H The antibody variable region of the common L chain is the same as the amino acid sequence of the variable region contained in SEQ ID NO:
(f11) The antibody according to (1), wherein the H chain variable region contained in the antibody variable region is the same as the amino acid sequence described in SEQ ID NO: 211, and the H The antibody variable region of the common L chain is the same as the amino acid sequence of the variable region contained in SEQ ID NO:
(f12) The antibody according to (1), wherein the H chain variable region contained in the antibody variable region is the same as the amino acid sequence described in SEQ ID NO: 211, and the H 164, and the antibody variable region of the common L chain is the same as the amino acid sequence of the variable region contained in SEQ ID NO: 223, and the antibody variable region of the common L chain is the same as the amino acid sequence of the variable region contained in SEQ ID NO:
(f13) The H chain variable region contained in the antibody variable region described in (1) above is the same as the amino acid sequence described in SEQ ID NO: 211, and the H chain variable region included in the antibody variable region described in (1) Chain variable region is the same as the amino acid sequence shown in SEQ ID NO: 168 and the common L chain antibody variable region is the same as the amino acid sequence of the variable region included in SEQ ID NO: 223,
(f14) The antibody according to (1), wherein the H chain variable region included in the antibody variable region is the same as the amino acid sequence shown in SEQ ID NO: 215, and the H The antibody variable region of the common L chain is the same as the amino acid sequence of the variable region contained in SEQ ID NO:
(f15) The antibody according to (1), wherein the H chain variable region contained in the antibody variable region is the same as the amino acid sequence set forth in SEQ ID NO: 215, and the H The antibody variable region of the common L chain is the same as the amino acid sequence of the variable region contained in SEQ ID NO: 299,
(f16) The antibody according to (1), wherein the H chain variable region contained in the antibody variable region is the same as the amino acid sequence described in SEQ ID NO: 215, and the H The antibody variable region of the common L chain is the same as the amino acid sequence of the variable region contained in SEQ ID NO:
(f17) The antibody according to (1), wherein the H chain variable region contained in the antibody variable region is the same as the amino acid sequence described in SEQ ID NO: 215, and the H The antibody variable region of the common L chain is the same as the amino acid sequence of the variable region contained in SEQ ID NO:
(f18) The H chain variable region contained in the antibody variable region described in (1) above is the same as the amino acid sequence described in SEQ ID NO: 215, and the H chain variable region contained in the antibody variable region described in (1) The antibody variable region of the common L chain is the same as the amino acid sequence of the variable region contained in SEQ ID NO:
(f19) The H chain variable region contained in the antibody variable region described in (1) above is the same as the amino acid sequence described in SEQ ID NO: 215, and the H chain variable region included in the antibody variable region described in (1) The antibody variable region of the common L chain is the same as the amino acid sequence of the variable region contained in SEQ ID NO:
(f20) the H chain variable region included in the antibody variable region described in (1) above is the same as the amino acid sequence described in SEQ ID NO: 215, and the H chain variable region included in the antibody variable region described in (1) The antibody variable region of the common L chain is the same as the amino acid sequence of the variable region contained in SEQ ID NO:
(f21) The antibody according to (1), wherein the H chain variable region contained in the antibody variable region is the same as the amino acid sequence described in SEQ ID NO: 215, and the H The antibody variable region of the common L chain is the same as the amino acid sequence of the variable region contained in SEQ ID NO:
(f22) The antibody according to (1), wherein the H chain variable region contained in the antibody variable region is the same as the amino acid sequence described in SEQ ID NO: 215, and the H The antibody variable region of the common L chain is the same as the amino acid sequence of the variable region contained in SEQ ID NO:
(f23) The antibody according to (1), wherein the H chain variable region contained in the antibody variable region is the same as the amino acid sequence described in SEQ ID NO: 215, and the H The chain variable region is the same as the amino acid sequence shown in SEQ ID NO: 129, and the antibody L variable region of the common L chain is the same as the amino acid sequence of the variable region included in SEQ ID NO: 53,
(f24) The antibody according to (1), wherein the H chain variable region contained in the antibody variable region is the same as the amino acid sequence described in SEQ ID NO: 215, and the H The antibody variable region of the common L chain is the same as the amino acid sequence of the variable region contained in SEQ ID NO:
(f25) The antibody according to (1), wherein the H chain variable region contained in the antibody variable region is the same as the amino acid sequence described in SEQ ID NO: 215, and the H The chain variable region is the same as the amino acid sequence shown in SEQ ID NO: 424, and the antibody L variable region of the common L chain is the same as the amino acid sequence of the variable region included in SEQ ID NO: 53
(f26) a multispecific antigen-binding molecule which binds to an epitope which overlaps with an epitope on the glypicane 3 and T cell receptor complex to which the multispecific antigen-binding molecule described in any one of (f1) to (f25) Have chains
제 1 항(3)에 기재된 Fc 영역이, 서열번호: 23∼26(IgG1∼IgG4)에 기재된 Fc 영역을 구성하는 아미노산 중 어느 하나의 아미노산이 변이되어 있는 Fc 영역인, 다중특이성 항원 결합 분자.16. The method according to any one of claims 1 to 15,
A multispecific antigen-binding molecule wherein the Fc region according to item (3) is an Fc region in which any one of the amino acids constituting the Fc region described in SEQ ID NOS: 23 to 26 (IgG1 to IgG4) is mutated.
제 1 항(3)에 기재된 Fc 영역이, EU 넘버링에 따라 특정되는 하기의 아미노산;
220위, 226위, 229위, 231위, 232위, 233위, 234위, 235위, 236위, 237위, 238위, 239위, 240위, 264위, 265위, 266위, 267위, 269위, 270위, 295위, 296위, 297위, 298위, 299위, 300위, 325위, 327위, 328위, 329위, 330위, 331위, 332위
로부터 선택되는, 적어도 1개의 아미노산이 변이되어 있는 Fc 영역인, 다중특이성 항원 결합 분자.17. The method of claim 16,
The Fc region of claim 1, wherein the Fc region is defined by the EU numbering;
220, 226, 229, 231, 232, 233, 234, 235, 236, 237, 239, 240, 264, 265, 266, 267 , 269, 270, 295, 296, 297, 298, 299, 300, 325, 327, 328, 329, 330, 331, 332
, Wherein the Fc region is at least one amino acid mutated.
제 1 항(3)에 기재된 Fc 영역이, EU 넘버링에 따라 특정되는 하기의 아미노산;
234위의 아미노산이 Arg, 235위의 아미노산이 Ala 또는 Arg, 239위의 아미노산이 Lys, 297위의 아미노산이 Ala
로부터 선택되는, 적어도 1개의 아미노산을 갖는 Fc 영역인, 다중특이성 항원 결합 분자.17. The method of claim 16,
The Fc region of claim 1, wherein the Fc region is defined by the EU numbering;
234 amino acid is Arg, 235 amino acid is Ala or Arg, 239 amino acid is Lys, 297 amino acid is Ala
Wherein the Fc region is an Fc region having at least one amino acid selected from the group consisting of:
제 1 항(3)에 기재된 Fc 영역이, 추가로, 헤테로2량체로 이루어지는 Fc 영역의 형성을 촉진하기 위한 아미노산 변이를 갖는, 다중특이성 항원 결합 분자.19. The method according to any one of claims 16 to 18,
The multispecific antigen binding molecule according to claim 1, wherein the Fc region further has an amino acid mutation for promoting the formation of an Fc region comprising a heterodimer.
헤테로2량체로 이루어지는 Fc 영역이, 하기 (g1) 또는 (g2)의 아미노산 서열의 조합인, 다중특이성 항원 결합 분자.
(g1) 서열번호: 57에 기재된 아미노산 서열을 갖는 정상 영역의 Fc 영역과 동일한 아미노산 서열과, 서열번호: 58에 기재된 아미노산 서열을 갖는 정상 영역의 Fc 영역과 동일한 아미노산 서열의 조합
(g2) 서열번호: 60 또는 62에 기재된 아미노산 서열을 갖는 정상 영역의 Fc 영역과 동일한 아미노산 서열과, 서열번호: 61에 기재된 아미노산 서열을 갖는 정상 영역의 Fc 영역과 동일한 아미노산 서열의 조합20. The method of claim 19,
A multispecific antigen binding molecule wherein the Fc region comprising a heterodimer is a combination of amino acid sequences of (g1) or (g2) below.
(g1) the amino acid sequence identical to the Fc region of the normal region having the amino acid sequence set forth in SEQ ID NO: 57 and the amino acid sequence identical to the Fc region having the amino acid sequence set forth in SEQ ID NO: 58
(g2) an amino acid sequence identical to the Fc region of the normal region having the amino acid sequence of SEQ ID NO: 60 or 62 and a combination of the same amino acid sequence as the Fc region of the normal region having the amino acid sequence of SEQ ID NO:
다중특이성 항원 결합 분자가 이중특이성 항체인, 다중특이성 항원 결합 분자.21. The method according to any one of claims 1 to 20,
A multispecific antigen binding molecule, wherein the multispecific antigen binding molecule is a bispecific antibody.
(h1) 글리피칸 3에 대한 결합 활성을 갖고, 서열번호 215에 기재된 아미노산 서열을 갖는 항체 H쇄 가변 영역과 서열번호 61에 기재된 아미노산 서열을 갖는 정상 영역으로 이루어지는 항체 H쇄, 및 T 세포 수용체 복합체에 대한 결합 활성을 갖고, 서열번호 424에 기재된 아미노산 서열을 갖는 항체 H쇄 가변 영역과 서열번호 60 또는 62에 기재된 아미노산 서열을 갖는 정상 영역으로 이루어지는 항체 H쇄, 및, 서열번호 53에 기재된 아미노산 서열을 갖는 항체의 공통 L쇄를 갖는, 이중특이성 항체,
(h2) 글리피칸 3에 대한 결합 활성을 갖고, 서열번호 215에 기재된 아미노산 서열을 갖는 항체 H쇄 가변 영역과 서열번호 61에 기재된 아미노산 서열을 갖는 정상 영역으로 이루어지는 항체 H쇄, 및 T 세포 수용체 복합체에 대한 결합 활성을 갖고, 서열번호 103에 기재된 아미노산 서열을 갖는 항체 H쇄 가변 영역과 서열번호 60 또는 62에 기재된 아미노산 서열을 갖는 정상 영역으로 이루어지는 항체 H쇄, 및, 서열번호 53에 기재된 아미노산 서열을 갖는 항체의 공통 L쇄를 갖는, 이중특이성 항체,
(h3) 글리피칸 3에 대한 결합 활성을 갖고, 서열번호 215에 기재된 아미노산 서열을 갖는 항체 H쇄 가변 영역과 서열번호 61에 기재된 아미노산 서열을 갖는 정상 영역으로 이루어지는 항체 H쇄, 및 T 세포 수용체 복합체에 대한 결합 활성을 갖고, 서열번호 103에 기재된 아미노산 서열을 갖는 항체 H쇄 가변 영역과 서열번호 60 또는 62에 기재된 아미노산 서열을 갖는 정상 영역으로 이루어지는 항체 H쇄, 및, 서열번호 299에 기재된 아미노산 서열을 갖는 항체의 공통 L쇄를 갖는, 이중특이성 항체,
(h4) 글리피칸 3에 대한 결합 활성을 갖고, 서열번호 215에 기재된 아미노산 서열을 갖는 항체 H쇄 가변 영역과 서열번호 61에 기재된 아미노산 서열을 갖는 정상 영역으로 이루어지는 항체 H쇄, 및 T 세포 수용체 복합체에 대한 결합 활성을 갖고, 서열번호 103에 기재된 아미노산 서열을 갖는 항체 H쇄 가변 영역과 서열번호 60 또는 62에 기재된 아미노산 서열을 갖는 정상 영역으로 이루어지는 항체 H쇄, 및, 서열번호 301에 기재된 아미노산 서열을 갖는 항체의 공통 L쇄를 갖는, 이중특이성 항체,
(h5) 글리피칸 3에 대한 결합 활성을 갖고, 서열번호 215에 기재된 아미노산 서열을 갖는 항체 H쇄 가변 영역과 서열번호 61에 기재된 아미노산 서열을 갖는 정상 영역으로 이루어지는 항체 H쇄, 및 T 세포 수용체 복합체에 대한 결합 활성을 갖고, 서열번호 103에 기재된 아미노산 서열을 갖는 항체 H쇄 가변 영역과 서열번호 60 또는 62에 기재된 아미노산 서열을 갖는 정상 영역으로 이루어지는 항체 H쇄, 및, 서열번호 302에 기재된 아미노산 서열을 갖는 항체의 공통 L쇄를 갖는, 이중특이성 항체,
(h6) 글리피칸 3에 대한 결합 활성을 갖고, 서열번호 215에 기재된 아미노산 서열을 갖는 항체 H쇄 가변 영역과 서열번호 61에 기재된 아미노산 서열을 갖는 정상 영역으로 이루어지는 항체 H쇄, 및 T 세포 수용체 복합체에 대한 결합 활성을 갖고, 서열번호 103에 기재된 아미노산 서열을 갖는 항체 H쇄 가변 영역과 서열번호 60 또는 62에 기재된 아미노산 서열을 갖는 정상 영역으로 이루어지는 항체 H쇄, 및, 서열번호 304에 기재된 아미노산 서열을 갖는 항체의 공통 L쇄를 갖는, 이중특이성 항체,
(h7) 글리피칸 3에 대한 결합 활성을 갖고, 서열번호 215에 기재된 아미노산 서열을 갖는 항체 H쇄 가변 영역과 서열번호 61에 기재된 아미노산 서열을 갖는 정상 영역으로 이루어지는 항체 H쇄, 및 T 세포 수용체 복합체에 대한 결합 활성을 갖고, 서열번호 103에 기재된 아미노산 서열을 갖는 항체 H쇄 가변 영역과 서열번호 60 또는 62에 기재된 아미노산 서열을 갖는 정상 영역으로 이루어지는 항체 H쇄, 및, 서열번호 306에 기재된 아미노산 서열을 갖는 항체의 공통 L쇄를 갖는, 이중특이성 항체,
(h8) 글리피칸 3에 대한 결합 활성을 갖고, 서열번호 215에 기재된 아미노산 서열을 갖는 항체 H쇄 가변 영역과 서열번호 61에 기재된 아미노산 서열을 갖는 정상 영역으로 이루어지는 항체 H쇄, 및 T 세포 수용체 복합체에 대한 결합 활성을 갖고, 서열번호 103에 기재된 아미노산 서열을 갖는 항체 H쇄 가변 영역과 서열번호 60 또는 62에 기재된 아미노산 서열을 갖는 정상 영역으로 이루어지는 항체 H쇄, 및, 서열번호 307에 기재된 아미노산 서열을 갖는 항체의 공통 L쇄를 갖는, 이중특이성 항체,
(h9) 글리피칸 3에 대한 결합 활성을 갖고, 서열번호 215에 기재된 아미노산 서열을 갖는 항체 H쇄 가변 영역과 서열번호 61에 기재된 아미노산 서열을 갖는 정상 영역으로 이루어지는 항체 H쇄, 및 T 세포 수용체 복합체에 대한 결합 활성을 갖고, 서열번호 103에 기재된 아미노산 서열을 갖는 항체 H쇄 가변 영역과 서열번호 60 또는 62에 기재된 아미노산 서열을 갖는 정상 영역으로 이루어지는 항체 H쇄, 및, 서열번호 309에 기재된 아미노산 서열을 갖는 항체의 공통 L쇄를 갖는, 이중특이성 항체,
(h10) 글리피칸 3에 대한 결합 활성을 갖고, 서열번호 215에 기재된 아미노산 서열을 갖는 항체 H쇄 가변 영역과 서열번호 61에 기재된 아미노산 서열을 갖는 정상 영역으로 이루어지는 항체 H쇄, 및 T 세포 수용체 복합체에 대한 결합 활성을 갖고, 서열번호 122에 기재된 아미노산 서열을 갖는 항체 H쇄 가변 영역과 서열번호 60 또는 62에 기재된 아미노산 서열을 갖는 정상 영역으로 이루어지는 항체 H쇄, 및, 서열번호 53에 기재된 아미노산 서열을 갖는 항체의 공통 L쇄를 갖는, 이중특이성 항체,
(h11) 글리피칸 3에 대한 결합 활성을 갖고, 서열번호 215에 기재된 아미노산 서열을 갖는 항체 H쇄 가변 영역과 서열번호 61에 기재된 아미노산 서열을 갖는 정상 영역으로 이루어지는 항체 H쇄, 및 T 세포 수용체 복합체에 대한 결합 활성을 갖고, 서열번호 129에 기재된 아미노산 서열을 갖는 항체 H쇄 가변 영역과 서열번호 60 또는 62에 기재된 아미노산 서열을 갖는 정상 영역으로 이루어지는 항체 H쇄, 및, 서열번호 53에 기재된 아미노산 서열을 갖는 항체의 공통 L쇄를 갖는, 이중특이성 항체,
(h12) 글리피칸 3에 대한 결합 활성을 갖고, 서열번호 215에 기재된 아미노산 서열을 갖는 항체 H쇄 가변 영역과 서열번호 61에 기재된 아미노산 서열을 갖는 정상 영역으로 이루어지는 항체 H쇄, 및 T 세포 수용체 복합체에 대한 결합 활성을 갖고, 서열번호 132에 기재된 아미노산 서열을 갖는 항체 H쇄 가변 영역과 서열번호 60 또는 62에 기재된 아미노산 서열을 갖는 정상 영역으로 이루어지는 항체 H쇄, 및, 서열번호 53에 기재된 아미노산 서열을 갖는 항체의 공통 L쇄를 갖는, 이중특이성 항체,
(h13) 글리피칸 3에 대한 결합 활성을 갖고, 서열번호 197에 기재된 아미노산 서열을 갖는 항체 H쇄 가변 영역과 서열번호 61에 기재된 아미노산 서열을 갖는 정상 영역으로 이루어지는 항체 H쇄, 및 T 세포 수용체 복합체에 대한 결합 활성을 갖고, 서열번호 128에 기재된 아미노산 서열을 갖는 항체 H쇄 가변 영역과 서열번호 60 또는 62에 기재된 아미노산 서열을 갖는 정상 영역으로 이루어지는 항체 H쇄, 및, 서열번호 299에 기재된 아미노산 서열을 갖는 항체의 공통 L쇄를 갖는, 이중특이성 항체,
(h14) 글리피칸 3에 대한 결합 활성을 갖고, 서열번호 197에 기재된 아미노산 서열을 갖는 항체 H쇄 가변 영역과 서열번호 61에 기재된 아미노산 서열을 갖는 정상 영역으로 이루어지는 항체 H쇄, 및 T 세포 수용체 복합체에 대한 결합 활성을 갖고, 서열번호 128에 기재된 아미노산 서열을 갖는 항체 H쇄 가변 영역과 서열번호 60 또는 62에 기재된 아미노산 서열을 갖는 정상 영역으로 이루어지는 항체 H쇄, 및, 서열번호 310에 기재된 아미노산 서열을 갖는 항체의 공통 L쇄를 갖는, 이중특이성 항체,
(h15) 글리피칸 3에 대한 결합 활성을 갖고, 서열번호 197에 기재된 아미노산 서열을 갖는 항체 H쇄 가변 영역과 서열번호 61에 기재된 아미노산 서열을 갖는 정상 영역으로 이루어지는 항체 H쇄, 및 T 세포 수용체 복합체에 대한 결합 활성을 갖고, 서열번호 128에 기재된 아미노산 서열을 갖는 항체 H쇄 가변 영역과 서열번호 60 또는 62에 기재된 아미노산 서열을 갖는 정상 영역으로 이루어지는 항체 H쇄, 및, 서열번호 319에 기재된 아미노산 서열을 갖는 항체의 공통 L쇄를 갖는, 이중특이성 항체,
(h16) 글리피칸 3에 대한 결합 활성을 갖고, 서열번호 197에 기재된 아미노산 서열을 갖는 항체 H쇄 가변 영역과 서열번호 61에 기재된 아미노산 서열을 갖는 정상 영역으로 이루어지는 항체 H쇄, 및 T 세포 수용체 복합체에 대한 결합 활성을 갖고, 서열번호 128에 기재된 아미노산 서열을 갖는 항체 H쇄 가변 영역과 서열번호 60 또는 62에 기재된 아미노산 서열을 갖는 정상 영역으로 이루어지는 항체 H쇄, 및, 서열번호 53에 기재된 아미노산 서열을 갖는 항체의 공통 L쇄를 갖는, 이중특이성 항체,
(h17) 글리피칸 3에 대한 결합 활성을 갖고, 서열번호 211에 기재된 아미노산 서열을 갖는 항체 H쇄 가변 영역과 서열번호 61에 기재된 아미노산 서열을 갖는 정상 영역으로 이루어지는 항체 H쇄, 및 T 세포 수용체 복합체에 대한 결합 활성을 갖고, 서열번호 142에 기재된 아미노산 서열을 갖는 항체 H쇄 가변 영역과 서열번호 60 또는 62에 기재된 아미노산 서열을 갖는 정상 영역으로 이루어지는 항체 H쇄, 및, 서열번호 299에 기재된 아미노산 서열을 갖는 항체의 공통 L쇄를 갖는, 이중특이성 항체,
(h18) 글리피칸 3에 대한 결합 활성을 갖고, 서열번호 211에 기재된 아미노산 서열을 갖는 항체 H쇄 가변 영역과 서열번호 61에 기재된 아미노산 서열을 갖는 정상 영역으로 이루어지는 항체 H쇄, 및 T 세포 수용체 복합체에 대한 결합 활성을 갖고, 서열번호 142에 기재된 아미노산 서열을 갖는 항체 H쇄 가변 영역과 서열번호 60 또는 62에 기재된 아미노산 서열을 갖는 정상 영역으로 이루어지는 항체 H쇄, 및, 서열번호 223에 기재된 아미노산 서열을 갖는 항체의 공통 L쇄를 갖는, 이중특이성 항체,
(h19) 글리피칸 3에 대한 결합 활성을 갖고, 서열번호 211에 기재된 아미노산 서열을 갖는 항체 H쇄 가변 영역과 서열번호 61에 기재된 아미노산 서열을 갖는 정상 영역으로 이루어지는 항체 H쇄, 및 T 세포 수용체 복합체에 대한 결합 활성을 갖고, 서열번호 144에 기재된 아미노산 서열을 갖는 항체 H쇄 가변 영역과 서열번호 60 또는 62에 기재된 아미노산 서열을 갖는 정상 영역으로 이루어지는 항체 H쇄, 및, 서열번호 223에 기재된 아미노산 서열을 갖는 항체의 공통 L쇄를 갖는, 이중특이성 항체,
(h20) 글리피칸 3에 대한 결합 활성을 갖고, 서열번호 206에 기재된 아미노산 서열을 갖는 항체 H쇄 가변 영역과 서열번호 61에 기재된 아미노산 서열을 갖는 정상 영역으로 이루어지는 항체 H쇄, 및 T 세포 수용체 복합체에 대한 결합 활성을 갖고, 서열번호 144에 기재된 아미노산 서열을 갖는 항체 H쇄 가변 영역과 서열번호 60 또는 62에 기재된 아미노산 서열을 갖는 정상 영역으로 이루어지는 항체 H쇄, 및, 서열번호 223에 기재된 아미노산 서열을 갖는 항체의 공통 L쇄를 갖는, 이중특이성 항체,
(h21) 글리피칸 3에 대한 결합 활성을 갖고, 서열번호 206에 기재된 아미노산 서열을 갖는 항체 H쇄 가변 영역과 서열번호 61에 기재된 아미노산 서열을 갖는 정상 영역으로 이루어지는 항체 H쇄, 및 T 세포 수용체 복합체에 대한 결합 활성을 갖고, 서열번호 142에 기재된 아미노산 서열을 갖는 항체 H쇄 가변 영역과 서열번호 60 또는 62에 기재된 아미노산 서열을 갖는 정상 영역으로 이루어지는 항체 H쇄, 및, 서열번호 223에 기재된 아미노산 서열을 갖는 항체의 공통 L쇄를 갖는, 이중특이성 항체,
(h22) 글리피칸 3에 대한 결합 활성을 갖고, 서열번호 206에 기재된 아미노산 서열을 갖는 항체 H쇄 가변 영역과 서열번호 61에 기재된 아미노산 서열을 갖는 정상 영역으로 이루어지는 항체 H쇄, 및 T 세포 수용체 복합체에 대한 결합 활성을 갖고, 서열번호 164에 기재된 아미노산 서열을 갖는 항체 H쇄 가변 영역과 서열번호 60 또는 62에 기재된 아미노산 서열을 갖는 정상 영역으로 이루어지는 항체 H쇄, 및, 서열번호 223에 기재된 아미노산 서열을 갖는 항체의 공통 L쇄를 갖는, 이중특이성 항체,
(h23) 글리피칸 3에 대한 결합 활성을 갖고, 서열번호 206에 기재된 아미노산 서열을 갖는 항체 H쇄 가변 영역과 서열번호 61에 기재된 아미노산 서열을 갖는 정상 영역으로 이루어지는 항체 H쇄, 및 T 세포 수용체 복합체에 대한 결합 활성을 갖고, 서열번호 168에 기재된 아미노산 서열을 갖는 항체 H쇄 가변 영역과 서열번호 60 또는 62에 기재된 아미노산 서열을 갖는 정상 영역으로 이루어지는 항체 H쇄, 및, 서열번호 223에 기재된 아미노산 서열을 갖는 항체의 공통 L쇄를 갖는, 이중특이성 항체,
(h24) 글리피칸 3에 대한 결합 활성을 갖고, 서열번호 211에 기재된 아미노산 서열을 갖는 항체 H쇄 가변 영역과 서열번호 61에 기재된 아미노산 서열을 갖는 정상 영역으로 이루어지는 항체 H쇄, 및 T 세포 수용체 복합체에 대한 결합 활성을 갖고, 서열번호 164에 기재된 아미노산 서열을 갖는 항체 H쇄 가변 영역과 서열번호 60 또는 62에 기재된 아미노산 서열을 갖는 정상 영역으로 이루어지는 항체 H쇄, 및, 서열번호 223에 기재된 아미노산 서열을 갖는 항체의 공통 L쇄를 갖는, 이중특이성 항체,
(h25) 글리피칸 3에 대한 결합 활성을 갖고, 서열번호 211에 기재된 아미노산 서열을 갖는 항체 H쇄 가변 영역과 서열번호 61에 기재된 아미노산 서열을 갖는 정상 영역으로 이루어지는 항체 H쇄, 및 T 세포 수용체 복합체에 대한 결합 활성을 갖고, 서열번호 168에 기재된 아미노산 서열을 갖는 항체 H쇄 가변 영역과 서열번호 60 또는 62에 기재된 아미노산 서열을 갖는 정상 영역으로 이루어지는 항체 H쇄, 및, 서열번호 223에 기재된 아미노산 서열을 갖는 항체의 공통 L쇄를 갖는, 이중특이성 항체The bispecific antibody according to any one of (h1) to (h25) below:
(h1) an antibody H chain having an antibody H chain variable region having the amino acid sequence shown in SEQ ID NO: 215 and a normal region having the amino acid sequence shown in SEQ ID NO: 61, and a T cell receptor complex , An antibody H chain comprising an antibody H chain variable region having the amino acid sequence shown in SEQ ID NO: 424 and a normal region having the amino acid sequence shown in SEQ ID NO: 60 or 62, and an antibody H chain having the amino acid sequence shown in SEQ ID NO: Lt; RTI ID = 0.0 > L, < / RTI > a bispecific antibody,
(h2) an antibody H chain having an antibody H chain variable region having an amino acid sequence shown in SEQ ID NO: 215 and a normal region having an amino acid sequence shown in SEQ ID NO: 61, and a T cell receptor complex , An antibody H chain having an antibody H chain variable region having the amino acid sequence shown in SEQ ID NO: 103 and a normal region having the amino acid sequence shown in SEQ ID NO: 60 or 62, and an antibody H chain having the amino acid sequence shown in SEQ ID NO: Lt; RTI ID = 0.0 > L, < / RTI > a bispecific antibody,
(h3) an antibody H chain having an antibody H chain variable region having an amino acid sequence shown in SEQ ID NO: 215 and a normal region having an amino acid sequence shown in SEQ ID NO: 61, and an antibody H chain having a binding activity to glycopecane 3 and a T cell receptor complex , An antibody H chain having an antibody H chain variable region having the amino acid sequence shown in SEQ ID NO: 103 and a normal region having the amino acid sequence shown in SEQ ID NO: 60 or 62, and an antibody H chain having the amino acid sequence shown in SEQ ID NO: Lt; RTI ID = 0.0 > L, < / RTI > a bispecific antibody,
(h4) an antibody H chain having an antibody H chain variable region having an amino acid sequence shown in SEQ ID NO: 215 and a normal region having an amino acid sequence shown in SEQ ID NO: 61, and a T cell receptor complex having a binding activity to glypicane 3 , An antibody H chain having an antibody H chain variable region having the amino acid sequence shown in SEQ ID NO: 103 and a normal region having the amino acid sequence shown in SEQ ID NO: 60 or 62, and an antibody H chain having the amino acid sequence shown in SEQ ID NO: Lt; RTI ID = 0.0 > L, < / RTI > a bispecific antibody,
(h5) an antibody H chain having an antibody H chain variable region having an amino acid sequence shown in SEQ ID NO: 215 and a normal region having an amino acid sequence shown in SEQ ID NO: 61, and a T cell receptor complex , An antibody H chain having an antibody H chain variable region having the amino acid sequence shown in SEQ ID NO: 103 and a normal region having the amino acid sequence shown in SEQ ID NO: 60 or 62, and an antibody H chain having the amino acid sequence shown in SEQ ID NO: Lt; RTI ID = 0.0 > L, < / RTI > a bispecific antibody,
(h6) an antibody H chain having an antibody H chain variable region having an amino acid sequence shown in SEQ ID NO: 215 and a normal region having an amino acid sequence shown in SEQ ID NO: 61, and a T cell receptor complex , An antibody H chain having an antibody H chain variable region having the amino acid sequence shown in SEQ ID NO: 103 and a normal region having the amino acid sequence shown in SEQ ID NO: 60 or 62, and an antibody H chain having the amino acid sequence shown in SEQ ID NO: Lt; RTI ID = 0.0 > L, < / RTI > a bispecific antibody,
(h7) an antibody H chain having an antibody H chain variable region having an amino acid sequence shown in SEQ ID NO: 215 and a normal region having an amino acid sequence shown in SEQ ID NO: 61, and a T cell receptor complex , An antibody H chain comprising an antibody H chain variable region having an amino acid sequence shown in SEQ ID NO: 103 and a normal region having an amino acid sequence shown in SEQ ID NO: 60 or 62, and an antibody H chain having an amino acid sequence represented by SEQ ID NO: Lt; RTI ID = 0.0 > L, < / RTI > a bispecific antibody,
(h8) an antibody H chain having an antibody H chain variable region having an amino acid sequence shown in SEQ ID NO: 215 and a normal region having an amino acid sequence shown in SEQ ID NO: 61, and a T cell receptor complex having a binding activity to glypicane 3 And an antibody H chain comprising an antibody H chain variable region having the amino acid sequence shown in SEQ ID NO: 103 and a normal region having the amino acid sequence shown in SEQ ID NO: 60 or 62, and an antibody H chain having the amino acid sequence shown in SEQ ID NO: Lt; RTI ID = 0.0 > L, < / RTI > a bispecific antibody,
(h9) an antibody H chain having an antibody H chain variable region having an amino acid sequence shown in SEQ ID NO: 215 and a normal region having an amino acid sequence shown in SEQ ID NO: 61, and a T cell receptor complex , An antibody H chain having an antibody H chain variable region having an amino acid sequence shown in SEQ ID NO: 103 and a normal region having an amino acid sequence shown in SEQ ID NO: 60 or 62, and an antibody H chain having an amino acid sequence shown in SEQ ID NO: Lt; RTI ID = 0.0 > L, < / RTI > a bispecific antibody,
(h10) an antibody H chain having an antibody H chain variable region having an amino acid sequence shown in SEQ ID NO: 215 and a normal region having an amino acid sequence shown in SEQ ID NO: 61, and an antibody H chain having a binding activity to glycopecane 3 and a T cell receptor complex And an antibody H chain having an antibody H chain variable region having the amino acid sequence shown in SEQ ID NO: 122 and a normal region having the amino acid sequence shown in SEQ ID NO: 60 or 62, and an antibody H chain having the amino acid sequence shown in SEQ ID NO: Lt; RTI ID = 0.0 > L, < / RTI > a bispecific antibody,
(h11) an antibody H chain having an antibody H chain variable region having an amino acid sequence shown in SEQ ID NO: 215 and a normal region having an amino acid sequence shown in SEQ ID NO: 61, and a T cell receptor complex , An antibody H chain having an antibody H chain variable region having the amino acid sequence shown in SEQ ID NO: 129 and a normal region having the amino acid sequence shown in SEQ ID NO: 60 or 62, and an antibody H chain having the amino acid sequence shown in SEQ ID NO: Lt; RTI ID = 0.0 > L, < / RTI > a bispecific antibody,
(h12) an antibody H chain having an antibody H chain variable region having an amino acid sequence shown in SEQ ID NO: 215 and a normal region having an amino acid sequence shown in SEQ ID NO: 61, and a T cell receptor complex , An antibody H chain having an antibody H chain variable region having the amino acid sequence shown in SEQ ID NO: 132 and a normal region having the amino acid sequence shown in SEQ ID NO: 60 or 62, and an antibody H chain having the amino acid sequence shown in SEQ ID NO: Lt; RTI ID = 0.0 > L, < / RTI > a bispecific antibody,
(h13) an antibody H chain having an antibody H chain variable region having an amino acid sequence shown in SEQ ID NO: 197 and a normal region having an amino acid sequence shown in SEQ ID NO: 61, and an antibody H chain having a binding activity for glycopecane 3 and a T cell receptor complex , An antibody H chain having an antibody H chain variable region having the amino acid sequence shown in SEQ ID NO: 128 and a normal region having the amino acid sequence shown in SEQ ID NO: 60 or 62, and an antibody H chain having the amino acid sequence shown in SEQ ID NO: Lt; RTI ID = 0.0 > L, < / RTI > a bispecific antibody,
(h14) an antibody H chain having an antibody H chain variable region having an amino acid sequence shown in SEQ ID NO: 197 and a normal region having an amino acid sequence shown in SEQ ID NO: 61, and a T cell receptor complex , An antibody H chain having an antibody H chain variable region having the amino acid sequence shown in SEQ ID NO: 128 and a normal region having the amino acid sequence shown in SEQ ID NO: 60 or 62, and an antibody H chain having the amino acid sequence shown in SEQ ID NO: Lt; RTI ID = 0.0 > L, < / RTI > a bispecific antibody,
(h15) an antibody H chain having an antibody H chain variable region having an amino acid sequence shown in SEQ ID NO: 197 and a normal region having an amino acid sequence shown in SEQ ID NO: 61, and a T cell receptor complex , An antibody H chain having an antibody H chain variable region having the amino acid sequence shown in SEQ ID NO: 128 and a normal region having the amino acid sequence shown in SEQ ID NO: 60 or 62, and an antibody H chain having the amino acid sequence shown in SEQ ID NO: Lt; RTI ID = 0.0 > L, < / RTI > a bispecific antibody,
(h16) an antibody H chain having an antibody H chain variable region having an amino acid sequence shown in SEQ ID NO: 197 and a normal region having an amino acid sequence shown in SEQ ID NO: 61, and a T cell receptor complex , An antibody H chain comprising an antibody H chain variable region having the amino acid sequence shown in SEQ ID NO: 128 and a normal region having the amino acid sequence shown in SEQ ID NO: 60 or 62, and an antibody H chain having the amino acid sequence shown in SEQ ID NO: Lt; RTI ID = 0.0 > L, < / RTI > a bispecific antibody,
(h17) an antibody H chain having an antibody H chain variable region having an amino acid sequence shown in SEQ ID NO: 211 and a normal region having an amino acid sequence shown in SEQ ID NO: 61, and a T cell receptor complex An antibody H chain having an antibody H chain variable region having the amino acid sequence shown in SEQ ID NO: 142 and a normal region having the amino acid sequence shown in SEQ ID NO: 60 or 62, and an antibody H chain having the amino acid sequence shown in SEQ ID NO: Lt; RTI ID = 0.0 > L, < / RTI > a bispecific antibody,
(h18) an antibody H chain having an antibody H chain variable region having an amino acid sequence shown in SEQ ID NO: 211 and a normal region having an amino acid sequence shown in SEQ ID NO: 61, and a T cell receptor complex , An antibody H chain comprising an antibody H chain variable region having the amino acid sequence shown in SEQ ID NO: 142 and a normal region having the amino acid sequence shown in SEQ ID NO: 60 or 62, and an antibody H chain having the amino acid sequence shown in SEQ ID NO: Lt; RTI ID = 0.0 > L, < / RTI > a bispecific antibody,
(h19) an antibody H chain having an antibody H chain variable region having an amino acid sequence shown in SEQ ID NO: 211 and a normal region having an amino acid sequence shown in SEQ ID NO: 61, and a T cell receptor complex , An antibody H chain comprising an antibody H chain variable region having the amino acid sequence shown in SEQ ID NO: 144 and a normal region having the amino acid sequence shown in SEQ ID NO: 60 or 62, and an antibody H chain having the amino acid sequence shown in SEQ ID NO: Lt; RTI ID = 0.0 > L, < / RTI > a bispecific antibody,
(h20) an antibody H chain having an antibody H chain variable region having an amino acid sequence shown in SEQ ID NO: 206 and a normal region having an amino acid sequence shown in SEQ ID NO: 61, and a T cell receptor complex , An antibody H chain comprising an antibody H chain variable region having the amino acid sequence shown in SEQ ID NO: 144 and a normal region having the amino acid sequence shown in SEQ ID NO: 60 or 62, and an antibody H chain having the amino acid sequence shown in SEQ ID NO: Lt; RTI ID = 0.0 > L, < / RTI > a bispecific antibody,
(h21) an antibody H chain having an antibody H chain variable region having the amino acid sequence shown in SEQ ID NO: 206 and a normal region having the amino acid sequence shown in SEQ ID NO: 61, and a T cell receptor complex , An antibody H chain comprising an antibody H chain variable region having the amino acid sequence shown in SEQ ID NO: 142 and a normal region having the amino acid sequence shown in SEQ ID NO: 60 or 62, and an antibody H chain having the amino acid sequence shown in SEQ ID NO: Lt; RTI ID = 0.0 > L, < / RTI > a bispecific antibody,
(h22) an antibody H chain having an antibody H chain variable region having an amino acid sequence shown in SEQ ID NO: 206 and a normal region having an amino acid sequence shown in SEQ ID NO: 61, and a T cell receptor complex , An antibody H chain having an antibody H chain variable region having the amino acid sequence shown in SEQ ID NO: 164 and a normal region having the amino acid sequence shown in SEQ ID NO: 60 or 62, and an antibody H chain having the amino acid sequence shown in SEQ ID NO: Lt; RTI ID = 0.0 > L, < / RTI > a bispecific antibody,
(h23) an antibody H chain having an antibody H chain variable region having an amino acid sequence shown in SEQ ID NO: 206 and a normal region having an amino acid sequence shown in SEQ ID NO: 61, and a T cell receptor complex , An antibody H chain having an antibody H chain variable region having the amino acid sequence shown in SEQ ID NO: 168 and a normal region having the amino acid sequence shown in SEQ ID NO: 60 or 62, and an antibody H chain having the amino acid sequence shown in SEQ ID NO: Lt; RTI ID = 0.0 > L, < / RTI > a bispecific antibody,
(h24) an antibody H chain having an antibody H chain variable region having an amino acid sequence shown in SEQ ID NO: 211 and a normal region having an amino acid sequence shown in SEQ ID NO: 61, and a T cell receptor complex , An antibody H chain having an antibody H chain variable region having the amino acid sequence shown in SEQ ID NO: 164 and a normal region having the amino acid sequence shown in SEQ ID NO: 60 or 62, and an antibody H chain having the amino acid sequence shown in SEQ ID NO: Lt; RTI ID = 0.0 > L, < / RTI > a bispecific antibody,
(h25) an antibody H chain having an antibody H chain variable region having an amino acid sequence shown in SEQ ID NO: 211 and a normal region having an amino acid sequence shown in SEQ ID NO: 61, and a T cell receptor complex having a binding activity for glycopecane 3 , An antibody H chain having an antibody H chain variable region having the amino acid sequence shown in SEQ ID NO: 168 and a normal region having the amino acid sequence shown in SEQ ID NO: 60 or 62, and an antibody H chain having the amino acid sequence shown in SEQ ID NO: Lt; RTI ID = 0.0 > L, < / RTI >
세포상해를 유도하는, 의약 조성물.29. The method of claim 28,
A pharmaceutical composition for inducing cytotoxicity.
세포상해가 T 세포 의존적 세포상해인, 의약 조성물.30. The method of claim 29,
Wherein the cytotoxic agent is a T cell dependent cytotoxic agent.
제 1 항 내지 제 20 항 중 어느 한 항에 기재된 다중특이성 항원 결합 분자, 또는 제 21 항 또는 제 22 항에 기재된 이중특이성 항체가 필요한 환자에게 투여하기 위한, 의약 조성물.29. The method of claim 28,
20. A pharmaceutical composition for administration to a patient in need of the multispecific antigen binding molecule according to any one of claims 1 to 20 or the bispecific antibody according to claim 21 or 22.
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